Jihao Li | Materials Science | Best Researcher Award

Dr. Jihao Li | Materials Science | Best Researcher Award

Associate Researcher at Shanghai Institute of Applied Physics, Chinese Academy of Sciences, China

Dr. Jihao Li is an Associate Researcher at the Shanghai Institute of Applied Physics, Chinese Academy of Sciences, specializing in radiation chemistry and irradiation technology for material modification. He earned his Ph.D. from the University of Chinese Academy of Sciences in 2014 and has since led groundbreaking research in environmental applications, including solar-driven desalination and wastewater treatment. With over 60 SCI-indexed publications, 1,900 citations, and 12 Chinese invention patents, his work has made significant scientific and practical contributions. He serves as a guest editor for Gels, a reviewer for Advanced Materials and Materials Letters, and is actively involved in professional committees. Recognized with multiple awards, he has delivered invited talks at international conferences. His expertise and leadership in innovative material applications position him as a strong contender for the Best Researcher Award, with potential for further impact through enhanced industry collaborations and expanded research outreach.

Professional Profile 

Education

Dr. Jihao Li earned his Ph.D. from the University of Chinese Academy of Sciences in 2014, specializing in radiation chemistry and material modification. His academic journey provided him with a strong foundation in applied physics and chemical engineering, equipping him with expertise in advanced irradiation technologies. Throughout his education, he focused on the intersection of chemistry and material science, leading to significant contributions in environmental remediation and nanomaterial applications. His doctoral research laid the groundwork for his current studies in solar-driven desalination, photocatalysis, and radiation-induced material modifications. Since completing his Ph.D., he has continued to expand his knowledge through interdisciplinary collaborations and professional development. His educational background, combined with extensive research experience, has positioned him as a leading expert in his field, contributing to numerous high-impact scientific publications, patents, and innovations that address critical global challenges such as water purification and environmental sustainability.

Professional Experience

Dr. Jihao Li has been an Associate Researcher at the Shanghai Institute of Applied Physics, Chinese Academy of Sciences, since 2014, where he leads the Radiation Chemistry and Applications group. With over a decade of professional experience, he has focused on the application of radiation chemistry and irradiation technology in material preparation and modification. His research has resulted in over 60 SCI-indexed publications, 12 Chinese invention patents, and numerous international collaborations. He serves as a guest editor for Gels and a reviewer for Advanced Materials and Materials Letters, highlighting his influence in the scientific community. Additionally, he is a council member of the China Nuclear Society’s Radiation Research and Application Branch and an active contributor to national standards for insulation materials. His expertise in photothermal desalination and wastewater treatment has led to significant advancements in environmental sustainability, making him a recognized leader in his field.

Research Interest

Dr. Jihao Li’s research interests lie at the intersection of radiation chemistry, material science, and environmental sustainability. His work primarily focuses on the application of irradiation technology for material preparation and modification, with a particular emphasis on developing innovative solutions for water purification and desalination. He explores solar-driven evaporation systems, photothermal catalysis, and nanomaterial-based wastewater treatment to address global water scarcity and pollution challenges. His recent research integrates reduced graphene oxide (rGO) and Ti₃C₂ MXene-based hydrogels to enhance solar evaporation efficiency and degrade organic pollutants. Additionally, he investigates radiation-induced structural modifications in polymers and composites for advanced industrial applications. His expertise extends to thermal shrinkage materials, nuclear radiation shielding, and functional coatings, demonstrating his commitment to both fundamental and applied research. Through interdisciplinary collaboration and technological innovation, Dr. Li aims to develop sustainable materials that contribute to environmental protection and resource management.

Award and Honor

Dr. Jihao Li has received multiple awards and honors in recognition of his significant contributions to radiation chemistry, material science, and environmental research. His innovative work in solar-driven desalination, photocatalysis, and wastewater treatment has earned him two prestigious research awards, highlighting his impact in both academic and applied fields. As an invited speaker at 10 international conferences, he has shared his expertise on radiation-induced material modification and sustainable water purification technologies. Additionally, his role as a council member of the China Nuclear Society’s Radiation Research and Application Branch and a committee member for national insulation materials standards underscores his leadership in scientific research and policy development. His editorial appointments in renowned journals such as Gels, along with his role as a reviewer for Advanced Materials and Materials Letters, further validate his standing as a respected scientist. His growing recognition showcases his influence in the global scientific community.

Research Skill

Dr. Jihao Li possesses strong research skills in radiation chemistry, material science, and environmental applications, with expertise in developing irradiation-based material modifications for practical use. His proficiency in nanomaterial synthesis, photothermal catalysis, and polymer engineering enables him to create advanced functional materials for water purification, desalination, and pollutant degradation. He is skilled in radiation-induced structural modifications, which he applies to enhance material properties for industrial and environmental applications. His analytical skills include spectroscopic analysis, electron microscopy, and thermal characterization techniques, allowing him to investigate material behaviors at the molecular level. Additionally, he excels in experimental design, project management, and interdisciplinary collaboration, contributing to the success of numerous research projects. With over 60 SCI publications, 12 patents, and extensive peer-review experience, Dr. Li demonstrates a high level of scientific rigor, innovation, and problem-solving ability, making him a leading researcher in applied chemistry and material science.

Conclusion

Dr. Jihao Li has strong research credentials, significant scientific contributions, and practical innovations in applied chemistry and environmental science. His work in solar-driven desalination and wastewater treatment is impactful. While there are areas for further development in industry collaborations and book publications, his achievements make him a highly suitable candidate for the Best Researcher Award.

Publications Top Noted

  • Ion sieving in graphene oxide membranes via cationic control of interlayer spacing

    • Year: 2017
    • Citations: 1,568
  • Salt‐induced fabrication of superhydrophilic and underwater superoleophobic PAA‐g‐PVDF membranes for effective separation of oil‐in‐water emulsions

    • Year: 2014
    • Citations: 765
  • Measurements of Higgs boson properties in the diphoton decay channel with pp collision data at with the ATLAS detector

    • Year: 2018
    • Citations: 605
  • Search for new phenomena in dijet events using pp collision data collected at with the ATLAS detector

    • Year: 2017
    • Citations: 524
  • Ultra-light, compressible and fire-resistant graphene aerogel as a highly efficient and recyclable absorbent for organic liquids

    • Year: 2014
    • Citations: 459
  • Volume I. Introduction to DUNE

    • Year: 2020
    • Citations: 452
  • Measurement of the Ratio of Branching Fractions B (B c+→ J/ψ τ+ ν τ)/B (B c+→ J/ψ μ+ ν μ)

    • Year: 2018
    • Citations: 397
  • A robust polyionized hydrogel with an unprecedented underwater anti‐crude‐oil‐adhesion property

    • Year: 2016
    • Citations: 385
  • Laundering durability of superhydrophobic cotton fabric

    • Year: 2010
    • Citations: 351
  • Layer‐by‐Layer Construction of Cu²⁺/Alginate Multilayer Modified Ultrafiltration Membrane with Bioinspired Superwetting Property for High‐Efficient Crude‐Oil-in-Water Emulsion Separation

    • Year: 2018
    • Citations: 316
  • Self-sensing, ultralight, and conductive 3D graphene/iron oxide aerogel elastomer deformable in a magnetic field

    • Year: 2015
    • Citations: 311
  • Measurement of inclusive and differential cross sections in the H → ZZ * → 4ℓ decay channel in pp collisions at TeV with the ATLAS detector

    • Year: 2017
    • Citations: 283
  • Graphene oxide‐based antibacterial cotton fabrics

    • Year: 2013
    • Citations: 265

Juan Li | Materials Science | Best Researcher Award

Dr. Juan Li | Materials Science | Best Researcher Award

Materials and Computer at Hubei Normal university, China

Dr. Juan Li is a dedicated researcher specializing in functional nanomaterials, particularly single-atom materials for sensing and energy applications. She earned her Ph.D. in Nanobiomedicine from Southwest University and has published multiple high-impact SCI-indexed papers, with research cited extensively in the field. Her contributions include pioneering work in biomimetic sensing and nanozyme applications, along with two patented inventions demonstrating the real-world impact of her studies. She has received numerous academic awards, including recognition for top-cited articles and excellence in scientific innovation. Beyond research, Dr. Li has engaged in academic conferences, lectured on computing fundamentals, and contributed to university administration. Her expertise, innovative approach, and commitment to advancing nanomaterials research make her a strong candidate for the Best Researcher Award. With continued independent research leadership and international collaborations, she is poised to make even greater contributions to the scientific community.

Professional Profile

Education

Dr. Juan Li has a strong academic background spanning nanobiomedicine and information security. She earned her Ph.D. in Nanobiomedicine from Southwest University (2018-2024), where she focused on designing functional nanomaterials, particularly single-atom materials for sensing and energy applications. Her doctoral research has led to multiple high-impact publications and patents, showcasing her contributions to the field. Before her Ph.D., she completed her Bachelor’s degree in Information Security at Nanjing University of Aeronautics and Astronautics (2010-2014), equipping her with a solid foundation in data security and computational techniques. This interdisciplinary educational background has enabled her to integrate nanotechnology with analytical methods, enhancing her research capabilities. Dr. Li’s academic journey reflects her dedication to scientific advancement, with a strong emphasis on both theoretical and applied research. Her diverse education has positioned her as a skilled researcher capable of bridging material science with technological innovation.

Professional Experience

Dr. Juan Li has a diverse professional background encompassing academia, research, and administration. She currently serves as a Lecturer at Hubei Normal University, where she teaches “Fundamentals of College Computing” to undergraduate students, focusing on essential digital skills, software proficiency, and C language programming for international students. Prior to this, she worked as an Administrative Secretary at Suzhou University of Science and Technology (2016-2018), where she played a key role in establishing the newly founded College of Materials. Her responsibilities included recruiting research staff, managing logistics, financial reimbursements, and designing the college’s website. Throughout her career, Dr. Li has demonstrated strong leadership and organizational skills, balancing research with teaching and administrative duties. Her professional journey highlights her ability to integrate scientific expertise with education and institutional development, making her a well-rounded academic and researcher with valuable contributions to both scientific innovation and higher education.

Research Interests

Dr. Juan Li’s research interests lie in the design and application of functional nanomaterials, with a particular focus on single-atom materials for sensing and energy applications. Her work explores the development of advanced nanocatalysts for biomimetic sensing, electrochemical detection, and energy conversion, contributing to fields such as biosensors, nanozymes, and sustainable energy. She is particularly interested in leveraging nanotechnology to enhance the performance of materials used in hydrogen evolution, lithium-sulfur batteries, and enzymatic reactions. Through her studies, she aims to bridge fundamental material science with practical applications, developing innovative solutions for high-sensitivity detection and efficient energy storage. Her interdisciplinary approach, combining nanomaterials, chemistry, and bioengineering, has resulted in multiple high-impact publications and patented inventions. Dr. Li’s research contributes significantly to advancing nanomaterial-based technologies, making her a valuable contributor to both academic and industrial advancements in the field of materials science and energy applications.

Awards and Honors

Dr. Juan Li has received numerous awards and honors in recognition of her academic excellence, research contributions, and technological innovation. During her undergraduate studies at Nanjing University of Aeronautics and Astronautics, she was awarded the Third Prize in the Excellent Scholarship for three consecutive years (2011-2013) and received an honorary certificate for outstanding volunteer service at the university library. As a Ph.D. researcher at Southwest University, she earned prestigious accolades, including the University-Level Excellent Scientific and Technological Achievement Award (2020) and the Jiu Huan Xin Yue Industrial Innovation Award (2021). Her research impact was further recognized when her paper was listed among the Top Cited Articles in Electroanalysis (2021). Additionally, she received the Second Prize of the Excellent Graduate Student Scholarship (2022) and was honored as an Advanced Individual in Academic & Technological Innovation. These achievements highlight her dedication, research excellence, and significant contributions to nanomaterials and biosensing technologies.

Research Skills

Dr. Juan Li possesses a diverse set of research skills, particularly in the design, synthesis, and application of functional nanomaterials. She specializes in single-atom catalysts, nanostructured materials, and their applications in biomimetic sensing and energy conversion. Her expertise includes electrochemical analysis, material characterization techniques such as scanning electron microscopy (SEM) and transmission electron microscopy (TEM), and spectroscopy methods for studying nanomaterial properties. Additionally, she has strong skills in developing biosensors and nanozyme-based detection systems for high-sensitivity analysis. Dr. Li is proficient in computational modeling and data analysis, enabling her to optimize material performance and understand reaction mechanisms. Her ability to integrate theoretical knowledge with practical applications has led to multiple high-impact publications and patented inventions. With a keen focus on interdisciplinary research, she excels at bridging nanotechnology, chemistry, and bioengineering, making significant contributions to the advancement of nanomaterial-based sensing and energy solutions.

Conclusion

Juan Li is a strong candidate for the Best Researcher Award due to her impressive research output, innovation in nanomaterials, and practical contributions through patents. While further independent leadership and international engagement could enhance her profile, her current achievements already place her as a highly deserving nominee.

Publication Top Notes

  • Title: Pairing dual hetero single atoms Co-Cu centers to reduce H₂O₂ for high-performance nanozyme sensor
  • Author(s): J. Li (Juan Li), J. Wu (Jinggao Wu), C. Li (Changming Li)
  • Journal: Electrochimica Acta
  • Year: 2025
  • Citation: Yet to be determined (as it is a future publication)

Shanpeng Wang | Materials Science | Best Researcher Award

Prof. Dr. Shanpeng Wang | Materials Science | Best Researcher Award

Institute of Crystal Materials, Shandong University, China

Dr. Prof. Shanpeng Wang is a distinguished researcher in crystal materials and optoelectronic functional materials. Born in Qingdao, China, in 1979, he earned his Ph.D. from Shandong University in 2007 and has since held various academic positions, currently serving as a Professor at the State Key Laboratory of Crystal Materials. His research focuses on crystal growth and characterization of mid-infrared nonlinear optical crystals, synthesis of novel inorganic functional materials, and Terahertz time-domain spectroscopy characterization. With international experience as a Guest Professor at the University of Konstanz, Germany, he has contributed significantly to advancing material sciences. His leadership in academia, combined with a strong research background, makes him a leading expert in his field. To further strengthen his profile, a detailed record of publications, citations, research grants, and awards would provide a comprehensive view of his impact on the scientific community.

Professional Profile 

Education 

Dr. Prof. Shanpeng Wang has a strong academic foundation in crystal materials and optoelectronic functional materials. He earned his Ph.D. from the State Key Laboratory of Crystal Materials, Shandong University, China, in 2007, where he specialized in the growth and characterization of advanced optical crystals. Following his doctoral studies, he continued his research as a Postdoctoral Fellow at the same institution from 2007 to 2009. He then progressed through various academic roles, serving as a Lecturer (2007–2009), Associate Professor (2009–2015), and ultimately achieving the rank of Professor in 2015. His academic journey also includes international exposure as a Guest Professor at the University of Konstanz, Germany (2013–2014), where he collaborated on cutting-edge research in material science. His extensive education and academic career reflect a deep commitment to advancing crystal materials research, positioning him as a leading expert in his field.

Professional Experience

Dr. Prof. Shanpeng Wang has an extensive professional background in crystal materials and optoelectronic functional materials. He began his academic career as a Postdoctoral Researcher at the State Key Laboratory of Crystal Materials, Shandong University (2007–2009), where he deepened his expertise in crystal growth and characterization. He then transitioned into a Lecturer role (2007–2009) before being promoted to Associate Professor in 2009, a position he held until 2015. During this time, he contributed significantly to research on nonlinear optical crystals and inorganic functional materials. In 2015, he was appointed as a Professor at Shandong University, leading advanced research in crystal materials. His international experience includes serving as a Guest Professor at the University of Konstanz, Germany (2013–2014), where he collaborated on pioneering research in optoelectronics. With nearly two decades of academic and research leadership, Dr. Wang has made substantial contributions to the field of material science.

Research Interest

Dr. Prof. Shanpeng Wang’s research interests lie in the fields of crystal materials and optoelectronic functional materials, with a strong focus on advancing optical and electronic technologies. His work primarily involves the growth and characterization of highly efficient mid-infrared nonlinear optical crystals, which are crucial for laser and photonic applications. Additionally, he specializes in the synthesis and characterization of novel inorganic functional materials, aiming to develop materials with enhanced optical, electronic, and structural properties. Another key area of his research is Terahertz time-domain spectroscopy characterization, where he explores the optical and electronic behaviors of advanced functional materials in the Terahertz spectrum. His research contributes to various high-tech applications, including laser technology, optical communication, and photonic devices. Through his interdisciplinary approach, Dr. Wang continues to push the boundaries of material science, fostering innovations in optical and electronic materials for next-generation technologies.

Award and Honor

Dr. Prof. Shanpeng Wang has made significant contributions to the field of crystal materials and optoelectronic functional materials, earning recognition for his research excellence. Although specific awards and honors are not listed in his profile, his academic achievements, including his professorship at the State Key Laboratory of Crystal Materials, Shandong University, reflect his esteemed position in the scientific community. His international experience as a Guest Professor at the University of Konstanz, Germany, further highlights his global impact. Given his expertise in mid-infrared nonlinear optical crystals, inorganic functional materials, and Terahertz spectroscopy, he may have received funding, research grants, or institutional awards for his pioneering work. To strengthen his profile, a detailed record of accolades, major scientific recognitions, patents, or high-impact publications would showcase his contributions more effectively. His extensive research and leadership position him as a strong candidate for prestigious scientific awards in material science.

Research Skill

Dr. Prof. Shanpeng Wang possesses a diverse and highly specialized set of research skills in crystal materials and optoelectronic functional materials. His expertise includes crystal growth and characterization, where he develops and analyzes mid-infrared nonlinear optical crystals for advanced photonic applications. He is skilled in the synthesis and structural analysis of novel inorganic functional materials, utilizing cutting-edge techniques to enhance material performance. Additionally, his proficiency in Terahertz time-domain spectroscopy characterization enables him to study the optical and electronic properties of functional materials at Terahertz frequencies, contributing to advancements in optoelectronic devices. His research methodologies involve material synthesis, spectroscopic analysis, and advanced crystallographic techniques, making him a leader in his field. With extensive experience in both experimental and theoretical aspects of materials science, Dr. Wang continues to drive innovation in laser technology, optical communication, and next-generation electronic materials, positioning himself as a key contributor to the field of material science.

Conclusion

Dr. Prof. Shanpeng Wang is a strong candidate for the Best Researcher Award due to his deep expertise, academic leadership, and international collaborations in crystal materials and optoelectronics. To further strengthen his application, it is recommended to highlight key research metrics, major grants, and awards to showcase his overall research impact.

Publications Top Noted

  • Title: Pyrochlore NaYbO₂: A Potential Quantum Spin Liquid Candidate
    Authors: C. Fan, Chuanyan; T. Chang, Tieyan; L. Fan, Longlong; X. Tao, Xutang; J. Zhang, Junjie
    Year: 2025
    Citations: 0

  • Title: Regulation of Charge Density Wave and Superconductivity in Kagome Superconductor CsV₃Sb₅ by Intercalation
    Authors: H. Xiao, Han; Y. Zhang, Yingxu; L. Yu, Lixuan; S. Wang, Shanpeng; Y. Wang, Yilin
    Year: 2025
    Citations: 0

  • Title: Polarity-Reversal of Exchange Bias in van der Waals FePS₃/Fe₃GaTe₂ Heterostructures
    Authors: H. Xiao, Han; B. Lyu, Bingbing; M. Mi, Mengjuan; S. Wang, Shanpeng; Y. Wang, Yilin
    Year: 2024
    Citations: 0

  • Title: Bulk Crystal Growth and Single-Crystal-to-Single-Crystal Phase Transitions in the Averievite CsClCu₅V₂O₁₀
    Authors: C. Liu, Chao; C. Ma, Chao; T. Chang, Tieyan; Y. Chen, Yusheng; J. Zhang, Junjie
    Year: 2024
    Citations: 0

  • Title: Unraveling the Deep-Level Defects Induced Optical Losses in LiInSe₂ Crystal Toward Enhancement of Mid-Infrared Laser Radiation
    Authors: S. Wang, Shilei; C. Ma, Chao; K. Xu, Kaihui; X. Tao, Xutang; S. Wang, Shanpeng
    Year: 2024
    Citations: 0

  • Title: Intercalation-Induced Monolayer Behavior in Bulk NbSe₂
    Authors: L. Yu, Lixuan; M. Mi, Mengjuan; H. Xiao, Han; S. Wang, Shanpeng; Y. Wang, Yilin
    Year: 2024
    Citations: 1

  • Title: Cascade of Phase Transitions and Large Magnetic Anisotropy in a Triangle-Kagome-Triangle Trilayer Antiferromagnet
    Authors: C. Liu, Chao; T. Chang, Tieyan; S. Wang, Shilei; Y. Chen, Yusheng; J. Zhang, Junjie
    Year: 2024
    Citations: 2

  • Title: Linear Dichroism Conversion in Quasi-1D Weyl Semimetal (TaSe₄)₂I Crystal with Giant Optical Anisotropy
    Authors: L. Wei, Limei; Q. Zhang, Qing; S. Wang, Shilei; X. Tao, Xutang; S. Wang, Shanpeng
    Year: 2024

Chandrahasya Nandanwar | Materials Science | Best Researcher Award

Mr. Chandrahasya Nandanwar | Materials Science | Best Researcher Award

Senior Reserach Scholar at Nevjabai Hitkarini College, Bramhapuri, India

 

Mr. Chandrahasya Motilal Nandanwar is a dedicated researcher specializing in photoluminescence and luminescence physics. With a Ph.D. from Gondwana University, he has made significant contributions to materials science, particularly in phosphors for solid-state lighting and white LEDs. His research excellence is evident through 32 international journal publications, multiple patents—including a granted South African patent—and a published book chapter. He has received prestigious fellowships, including the Junior and Senior Research Fellowships under MAHAJYOTI. Additionally, he serves as a reviewer for reputed international journals such as Ceramics International and Journal of Optics. With extensive teaching experience at various institutions, he has also developed expertise in instrumentation, particularly with fluorescence spectrophotometers. His groundbreaking research and commitment to academia make him a strong contender for the Best Researcher Award, recognizing his outstanding contributions to the field of luminescent materials and photonic applications.

Professional Profile 

Education

Mr. Chandrahasya Motilal Nandanwar has a strong academic background in physics, specializing in photoluminescence and luminescent materials. He earned his Ph.D. in Physics from Gondwana University, focusing on the development of advanced phosphor materials for solid-state lighting and white LEDs. Before his doctoral studies, he completed his Master of Science (M.Sc.) in Physics, where he built a solid foundation in materials science, optics, and spectroscopy. His academic journey was marked by excellence, securing prestigious fellowships such as the Junior Research Fellowship (JRF) and Senior Research Fellowship (SRF) under the MAHAJYOTI scheme. With a keen interest in experimental physics, he has gained extensive experience in fluorescence spectrophotometry and other analytical techniques. His education has been instrumental in shaping his research expertise, leading to multiple international publications, patents, and contributions to photonic materials. His academic achievements reflect his commitment to advancing scientific knowledge in luminescence physics.

Professional Experience

Mr. Chandrahasya Motilal Nandanwar has extensive professional experience in the field of physics, particularly in luminescent materials and photonics. As a dedicated researcher, he has contributed significantly to the development of phosphor materials for solid-state lighting and white LEDs. He has held prestigious research fellowships, including Junior Research Fellowship (JRF) and Senior Research Fellowship (SRF) under the MAHAJYOTI scheme, allowing him to work on cutting-edge projects related to photoluminescence. His expertise spans fluorescence spectrophotometry, material synthesis, and characterization techniques, making him a valuable asset in experimental physics. Throughout his career, he has authored multiple international research papers, filed patents, and participated in scientific conferences, showcasing his commitment to innovation. His professional journey reflects a strong dedication to advancing luminescent materials for energy-efficient lighting solutions. With a passion for research and development, Mr. Nandanwar continues to contribute to the scientific community through his work in photonic and optical materials.

Research Interest

Mr. Chandrahasya Motilal Nandanwar’s research interests lie in the field of luminescent materials, photonics, and advanced optical technologies. His work primarily focuses on the synthesis, characterization, and application of phosphor materials for energy-efficient lighting and display technologies. He is particularly interested in photoluminescence, thermoluminescence, and persistent luminescence properties of rare-earth-doped materials. His research extends to the development of novel nanophosphors for applications in LEDs, bio-imaging, and security markers. Additionally, he explores the role of defect engineering in enhancing luminescence efficiency and stability. His studies also include upconversion and downconversion luminescence mechanisms for next-generation optical devices. He is passionate about developing eco-friendly and cost-effective luminescent materials that contribute to sustainable energy solutions. Through his research, he aims to bridge the gap between fundamental science and practical applications, advancing technologies in lighting, display panels, and photonic sensors while mentoring young researchers in material science and optical physics.

Award and Honor

Mr. Chandrahasya Motilal Nandanwar has received several prestigious awards and honors in recognition of his contributions to the field of luminescent materials and photonics. As a distinguished researcher, he was awarded the Junior Research Fellowship (JRF) and Senior Research Fellowship (SRF) under the MAHAJYOTI scheme, which supported his advanced studies and research in photoluminescence. His groundbreaking work in the synthesis and characterization of phosphor materials for energy-efficient lighting has earned him accolades at national and international conferences. He has been honored for his outstanding research presentations and publications in reputed scientific journals. Additionally, his contributions to the development of innovative luminescent materials have led to patent filings, further solidifying his reputation in the scientific community. His dedication to advancing optical and photonic technologies has made him a respected figure among peers, and his achievements continue to inspire aspiring researchers in the field of physics and material science.

Research Skill

Mr. Chandrahasya Motilal Nandanwar possesses a diverse set of research skills in the field of luminescent materials and photonics. He is proficient in the synthesis and characterization of phosphor materials, utilizing techniques such as solid-state reaction, sol-gel, and hydrothermal methods. His expertise extends to advanced spectroscopic techniques, including photoluminescence (PL), thermoluminescence (TL), and X-ray diffraction (XRD) analysis, enabling him to investigate the structural and optical properties of materials. He is skilled in defect engineering to enhance luminescence efficiency and optimize material properties for practical applications. Additionally, he has experience with computational modeling and data analysis for understanding luminescence mechanisms. His ability to design experiments, analyze complex datasets, and interpret results makes him an accomplished researcher. He is also adept at writing research papers, grant proposals, and patents, demonstrating his strong scientific communication skills. His research acumen contributes to advancements in energy-efficient lighting and display technologies.

Conclusion

Mr. Chandrahasya Motilal Nandanwar has demonstrated exceptional research capabilities in the field of luminescence, backed by strong academic qualifications, numerous publications, patents, and recognized reviewer roles. His contributions to the field, particularly in photoluminescence and white LED phosphors, make him a strong candidate for the Best Researcher Award.

While he already has an impressive portfolio, focusing on independent research, international collaborations, and real-world applications could further elevate his profile. Nevertheless, his achievements make him highly deserving of this recognition.

Publications Top Noted

  • Photoluminescence Properties of Novel Ca₃Y₂B₄O₁₂:Eu³⁺ and Dy³⁺ Phosphors for Solid‐State Lighting Prepared by Combustion Method

    • Authors: C. M. Nandanwar, N. S. Kokode, A. N. Yerpude, A. M. Uke
    • Year: 2025
    • DOI: 10.1002/bio.70126
  • Photoluminescence Studies of Sr₃P₄O₁₃:Eu³⁺ Phosphor Prepared by Wet Chemical Method: Structural Properties, Charge Compensation via Alkali Metal Ions and Judd-Ofelt Analysis

  • Photoluminescence Characteristics of YCa₄O(BO₃)₃:Dy³⁺ Phosphor for w-LEDs Prepared by Combustion Techniques

  • Photoluminescence Properties of Novel NaPb₄(PO₄)₃:Dy³⁺ Phosphors for n-UV Solid-State Lighting Prepared by Combustion Synthesis

    • Authors: C. M. Nandanwar, N. S. Kokode, D. M. Parshuramkar, A. N. Yerpude, S. J. Dhoble
    • Year: 2024
    • DOI: 10.1007/s12596-023-01595-y
  • Wet Chemical Synthesis and Photoluminescence Properties of NaSrPO₄:Dy³⁺ and NaSrPO₄:Eu³⁺ Phosphors for Near UV-Based w-LEDs

  • Synthesis and Photoluminescence Properties of AlPO₄:Ln (Ln = Dy³⁺, Eu³⁺ and Sm³⁺) Phosphors for Near UV-Based White LEDs Application

  • Photoluminescence Characteristics of Novel Sm³⁺ Ions-Doped La₁.₄Al₂₂.₆O₃₆ Phosphor for n-UV w-LED

    • Authors: Ramkrushna M. Yerojwar, Namdeo S. Kokode, Chandrahasya M. Nandanwar, Dipti K. Ingole, Suchita T. Peddiwar
    • Year: 2023
    • DOI: 10.1002/bio.4533
  • Synthesis and Photoluminescence Characteristics of Ba₂Ca(PO₄)₄:Dy³⁺ Phosphors for n-UV Based Solid-State Lighting

  • Luminescence Properties of LaPO₄:RE (RE = Dy³⁺, Eu³⁺, Sm³⁺) Orthophosphate Phosphor for n-UV Solid-State Lighting Prepared by Wet Chemical Synthesis

Xuesong Li | Materials Science | Best Researcher Award

🌟Dr. Xuesong Li, Materials Science, Best Researcher Award🏆

 Doctorate at Shandong University, China

Xuesong Li is a lecturer at the School of Nuclear Science and Engineering, North China Electric Power University, with a background in Materials Science and Engineering. He obtained his Ph.D. from the State Key Laboratory of Crystal Materials at Shandong University, where he also worked as a postdoctoral researcher. Li’s research focuses on the preparation of MXene and its device applications, as well as the synthesis of large-size, high-quality halide scintillation single crystals.

Author Metrics

Scopus Profile

Xuesong Li has a strong publication record with several articles published in high-impact journals such as Chemical Engineering Journal, Advanced Materials, and Advanced Functional Materials. His research has garnered attention in the scientific community, as evidenced by his publications’ citation metrics and journal impact factors.

Xuesong Li is affiliated with the State Key Laboratory of Crystal Materials in Jinan, China. He has an Scopus Author Identifier and has been cited 223 times across 217 documents. His h-index is 6, indicating the number of papers (h) that have received at least h citations. Li has authored 11 documents.

Education

Li completed his Ph.D. in Materials Science and Engineering at the State Key Laboratory of Crystal Materials, Shandong University. Prior to this, he earned his bachelor’s degrees in Materials Engineering and Polymer Materials and Engineering from Taiyuan University of Technology and Liaocheng University, respectively.

Research Focus

Li’s primary research interests include the preparation of MXene and its applications in various devices, along with the synthesis and characterization of large-size, high-quality halide scintillation single crystals. His work contributes to the advancement of materials science and engineering, particularly in the development of novel materials for diverse applications.

Professional Journey

After completing his Ph.D., Li served as a postdoctoral researcher at the State Key Laboratory of Crystal Materials, Shandong University, where he conducted research under the supervision of Professors Xutang Tao and Zeliang Gao. He currently holds a position as a lecturer at the School of Nuclear Science and Engineering, North China Electric Power University, where he continues his research and contributes to the academic community.

Honors & Awards

Throughout his academic journey, Xuesong Li has received numerous honors and awards, including national scholarships, recognition as an excellent student in Shandong Province, and the National Inspirational Scholarship. His outstanding academic achievements reflect his dedication to excellence in research and education.

Publications Noted & Contributions

Li has made significant contributions to the field of materials science through his publications in reputable journals. His research on MXene synthesis methods, halide scintillation single crystals, and their applications in various devices has advanced the understanding of these materials and their potential applications in areas such as energy storage, biomedical engineering, and radiation detection.

“Achieving a Record Scintillation Performance by Micro-Doping a Heterovalent Magnetic Ion in Cs3Cu2I5 Single-Crystal”

  • Authors: Yao, Q., Li, J., Li, X., …, Wang, Z., Tao, X.
  • Published in: Advanced Materials, 2023, 35(44), 2304938
  • Summary: This study reports on achieving record scintillation performance by micro-doping a heterovalent magnetic ion in Cs3Cu2I5 single-crystal. Scintillation materials are crucial in various fields such as medical imaging and radiation detection, and this research likely presents a significant advancement in this area.

“Ambient-stable MXene with superior performance suitable for widespread applications”

  • Authors: Li, X., Ma, X., Zhang, H., …, Zhang, J., Tao, X.
  • Published in: Chemical Engineering Journal, 2023, 455, 140635
  • Summary: This paper introduces an ambient-stable MXene material with superior performance, which holds potential for widespread applications. MXenes are a class of two-dimensional materials known for their unique properties, and achieving stability under ambient conditions enhances their utility in various fields.

“Passively Q-switched single crystal fiber pulsed laser at 1.05 µm with T3C2Tx as the saturable absorber”

  • Authors: Ma, X., Xue, N., Wang, T., …, He, J., Tao, X.
  • Published in: Optics Express, 2022, 30(25), pp. 44617–44627
  • Summary: This study presents a passively Q-switched single crystal fiber pulsed laser operating at 1.05 µm, with T3C2Tx as the saturable absorber. Q-switched lasers have applications in various fields such as telecommunications, laser surgery, and spectroscopy.

“High-Quality Cs3Cu2I5 Single-Crystal is a Fast-Decaying Scintillator”

  • Authors: Yao, Q., Li, J., Li, X., …, Wang, Z., Tao, X.
  • Published in: Advanced Optical Materials, 2022, 10(23), 2201161
  • Summary: This paper investigates the properties of high-quality Cs3Cu2I5 single-crystal as a fast-decaying scintillator. Understanding the decay characteristics of scintillators is crucial for optimizing their performance in various applications.

“Highly tumoricidal efficiency of non-oxidized MXene-Ti3C2Tx quantum dots on human uveal melanoma”

  • Authors: Zhang, H., Li, X., You, P., …, Tao, X., Qu, Y.
  • Published in: Frontiers in Bioengineering and Biotechnology, 2022, 10, 1028470
  • Summary: This study investigates the highly tumoricidal efficiency of non-oxidized MXene-Ti3C2Tx quantum dots on human uveal melanoma. MXene-based nanomaterials hold promise for various biomedical applications, including cancer therapy, due to their unique properties and biocompatibility.

Research Timeline

2010-2014: Bachelor’s education in Materials Engineering and Polymer Materials and Engineering 2014-2017: Bachelor’s research at Taiyuan University of Technology 2017-2021: Ph.D. research at Shandong University 2021-2024: Postdoctoral research at Shandong University 2024-Present: Lecturer at North China Electric Power University

Collaborations and Projects

Xuesong Li has collaborated with leading researchers in the field of materials science, including Professors Xutang Tao and Zeliang Gao at Shandong University. His research projects encompass a wide range of topics, from the synthesis of novel materials to the development of advanced devices for practical applications. Collaborations with academic and industrial partners enhance the impact and applicability of his research findings.

 

Deep Shankar | Materials Science | Best Scholar Award

🌟Mr. Deep Shankar, Materials Science, Best Scholar Award 🏆

  Deep Shankar at National Institute of Technology, Karnataka, India

Deep Shankar is a Ph.D. candidate in Mechanical Engineering at the National Institute of Technology Karnataka (NITK), Surathkal. With an M.Tech in Manufacturing Systems Engineering from Sant Longowal Institute of Engineering & Technology (SLIET) and a B.E. in Mechanical Engineering from JSSATE, Bengaluru, Deep’s academic journey reflects his passion for engineering and research. His expertise spans from project management and leadership to analytical skills and teaching experience. Deep is committed to contributing his knowledge and skills to the field while fostering continuous learning and teamwork.

Author Metrics:

Deep’s contributions have been recognized through his author metrics, including citations, impact factor of publications, and h-index, reflecting the significance of his research in the academic community.

ORCID Profile

Scopus Profile

Google Scholar Profile

Prabhu Shankar, associated with the National Institute of Technology Karnataka (NITK) in Mangalore, India. The profile indicates that Deep Prabhu Shankar has 21 citations from 21 documents, with an h-index of 1.

Education:

Deep Shankar holds a Ph.D. in Mechanical Engineering from NITK, Surathkal, with a focus on improving the properties of thermally sprayed hydroxyapatite bio-ceramic coatings. He also earned an M.Tech in Manufacturing Systems Engineering from SLIET, Sangrur, and a B.E. in Mechanical Engineering from JSSATE, Bengaluru.

Research Focus:

Deep’s research focuses on enhancing the properties of bio-ceramic coatings for orthopedic applications. His work involves incorporating reinforcements like alumina and functionalized carbon nanotubes to improve the performance and longevity of these coatings.

Professional Journey:

Deep has over four years of experience as a Teaching Assistant at NITK, Surathkal, along with extensive experience teaching at various levels, including JEE Mains/NEET and board exams. He has also worked as a Doubt Solver at Aakash EduTech Private Limited and has hands-on experience with advanced analytical tools like FESEM, TEM, and Raman spectroscopy.

Honors & Awards:

Throughout his academic journey, Deep has received prestigious scholarships such as the MHRD scholarship for his M.Tech and the Institute Assistance Scholarship for his Ph.D. He has also received distinctions in his B.E. and has qualified for competitive exams like the Graduate Aptitude Test in Engineering.

Publications Top Noted & Contributions:

Deep has contributed to the field through research publications and presentations. Notably, he has presented his work on biomaterials’ blood-compatibility assessment at national and international workshops and conferences.

Title: “Effect of Surface Chemistry on Hemolysis, Thrombogenicity, and Toxicity of Carbon Nanotube Doped Thermally Sprayed Hydroxyapatite Implants”

  • Published in: ACS Biomaterials Science & Engineering in 2024.
  • Focus: This study investigates how variations in surface chemistry, influenced by the incorporation of carbon nanotubes and thermal spraying techniques, impact the hemolysis, thrombogenicity, and toxicity of hydroxyapatite-based orthopedic implants.
  • Key Findings: The article likely discusses the results of in vitro experiments assessing the hemolytic potential, thrombogenicity, and toxicity of the implants with different surface chemistries. It may reveal insights into how surface modifications affect the interaction between the implants and blood components, potentially influencing their biocompatibility.

Title: “Thermal spray processes influencing surface chemistry and in-vitro hemocompatibility of hydroxyapatite-based orthopedic implants”

  • Published in: Biomaterials Advances with the identifier 213791.
  • Focus: This study specifically investigates the impact of various thermal spray processes on the surface chemistry and in vitro hemocompatibility of hydroxyapatite-based orthopedic implants.
  • Key Findings: The article likely delves into the effects of different thermal spray techniques on the surface characteristics of the implants and how these modifications influence their interactions with blood components. It may provide insights into optimizing thermal spray processes to enhance the hemocompatibility of orthopedic implants.

Research Timeline:

Deep’s research journey spans from his undergraduate years to his current Ph.D. candidacy. Starting with his B.E. project on a portable wind charger, he has progressed to delve into advanced topics in manufacturing systems and bio-ceramic coatings, showcasing a consistent commitment to research and academic excellence.

Sreelakshm Krishna | Materials Science | Best Researcher Award

🌟Ms. Sreelakshm Krishna, Materials Science, Best Researcher Award 🏆

Sreelakshm Krishna at Madurai Kamaraj University, India

Sreelakshmi Krishna, a 27-year-old researcher currently pursuing a Ph.D. at the National Forensic Sciences University. Married and residing in Thrissur, India, my academic journey has been marked by a passion for Physics and Forensic Sciences. I hold an MPhil in Physics from Madurai Kamaraj University and completed my Integrated M.Sc in Physics/Mathematics from Amrita University. I have a strong foundation in academia, coupled with practical experience as an Assistant Professor at PM Thevar College, Madurai.

Google Scholar Profile

Orcid Profile

Education:

Pursuing Ph.D. at National Forensic Sciences University

MPhil Physics, Madurai Kamaraj University, 2019-21 (73%)

Integrated M.Sc Physics/Mathematics, Amrita University, 2013-18 (CGPA 7.02)

ISC Board – Hari Sri Vidya Nidhi School, Thrissur, 2012 (75%)

ICSE Board – Hari Sri Vidya Nidhi School, Thrissur, 2010 (81%)

Academic Achievements:

Sreelakshmi’s academic journey continued with an MPhil in Physics at Madurai Kamaraj University, where she excelled, graduating with distinction. Her commitment to learning extended further as she currently pursues a Ph.D. at the National Forensic Sciences University. Throughout her educational endeavors, she consistently demonstrated a passion for physics and an eagerness to delve into interdisciplinary research.

Professional Experience:

In 2019, Sreelakshmi stepped into the realm of academia as an Assistant Professor in the Department of Forensic Science at PM Thevar College, Madurai. This professional stint provided her with valuable insights into the practical applications of her academic expertise, enhancing her overall understanding of forensic science.

Research Focus and Contributions:

Sreelakshmi’s research journey showcases a profound interest in the intersection of Physics and Forensic Sciences. Her notable contributions include a narrative review on gunshot residue detection techniques and demographical identification of trace metals in soil samples. Moreover, her recent work on the preparation and characterization of copper gallium sulphide thin films exhibits a commitment to advancing materials science.

Awards and Recognition:

In recognition of her contributions, Sreelakshmi received the “Best Young Women Scientist Award” for her oral presentation at the 5th International Conference on Forensic Research and Toxicology in Singapore. This acknowledgment underscores her dedication and expertise in the field.

Personal Interests and Skills:

Beyond academia, Sreelakshmi is a multifaceted individual with skills ranging from programming in C to proficiency in MATLAB. Her involvement in cultural activities, such as mime and painting, along with formal training in singing and dancing, reflects her creative side. Balancing academic rigor with artistic expression, she is a well-rounded individual.

Declaration and Future Aspirations:

Sreelakshmi Krishna affirms the accuracy of the provided information in her biography, reflecting her academic journey, professional experiences, and personal interests. As she continues her pursuit of knowledge through her Ph.D., she remains dedicated to contributing meaningfully to the fields of Physics and Forensic Sciences.

Publications Top Noted & Contributions:

I have made significant contributions to the field, with publications in reputable journals such as IntechOpen and the Egypt Journal of Forensic Science. My recent work includes a paper on the preparation and characterization of copper gallium sulphide thin films.

A Chronological Study of Gunshot (GSR) Detection Techniques: A Narrative Review

Author: SKP Ahuja

Published in: Egyptian Journal of Forensic Science

Cited By: Not specified

Year: 2023

Abstract: This narrative review presents a chronological study of gunshot residue (GSR) detection techniques. Delving into the evolution of methodologies over time, the paper provides insights into the advancements in forensic science concerning gunshot residue analysis.

Demographical Identification of Trace Metals Found in Soil Samples from India

Authors: S Krishna, P Ahuja

Published in: IntechOpen

Cited By: Not specified

Year: 2023

Abstract: This publication focuses on the demographical identification of trace metals in soil samples sourced from India. The study contributes to the understanding of soil composition, with potential implications for forensic investigations and environmental sciences.

Preparation and Characterization of Pristine and Sn Doped Copper Gallium Sulphide (CGS) Thin Films Using Spray Pyrolysis Technique

Authors: S Krishna, V Vasu

Published in: Available at SSRN 4600102

Cited By: Not specified

Year: Not specified

Abstract: This work details the preparation and characterization of pristine and Sn doped Copper Gallium Sulphide (CGS) thin films using the spray pyrolysis technique. The paper explores the structural and chemical properties of these thin films, contributing to materials science research.

Research Timeline:

MPhil Project: “Preparation and characterization of pure and Sn doped Copper Gallium Sulphide Thin films” (Madurai Kamaraj University)

MSc Main Project: “Understanding Solid State Gas Sensor Application” (CSIR National Physical Laboratory, New Delhi)

BSc Mini Project: “Preparation and characterization of ZnO thin films” (Amrita Vishwa Vidyapeetham, Amritapuri)

This timeline underscores my commitment to academic and practical research, contributing to advancements in forensic science.

Fanbin Meng | Materials Science | Best Researcher Award

🌟 Prof Dr. Fanbin Meng, Southwest Jiaotong University, China: Materials Science🏆

Professional Profiles:

Bio Summary:

Dr. Fanbin Meng is a distinguished male professor in the field of Materials Science and Engineering, specializing in Electromagnetic Functional Materials. Born on March 22nd, 1985, he currently holds a position at Southwest Jiaotong University, where he serves as a doctoral supervisor. Dr. Meng has earned his Doctorate and has been recognized for his exceptional contributions to the field of Material Science.

Education:

  • Ph.D. in Materials Science and Engineering

Professional Journey:

Dr. Meng has an illustrious career, holding the position of Professor in the School of Materials Science and Engineering at Southwest JiaoTong University. He is also recognized as an eagle scholar at the university and a science and technology nova. His primary focus lies in the design, preparation, and research of electromagnetic protection materials.

Research Focus:

  • Electromagnetic Functional Materials
  • Lightweight Broadband High-efficiency Absorbing Materials
  • Polymer Composites
  • Functional Polymers
  • Nanomaterials and Applications

Honors & Awards:

  • Winner of Sichuan Outstanding Youth Fund
  • Selected as one of the World’s Top 2% Scientists in 2022
  • 13th Invention and Entrepreneurship Award • Person Award in 2023

Publications Top Noted & Contributions:

Dr. Meng has an impressive publication record, with over 70 SCI papers and 17 invention patents. His research has garnered significant attention, with a citation index of 4690 and an H-index of 36. Notably, he has authored 50 papers as the first and corresponding author, including highly cited and hot papers.

Title: Graphene-based microwave absorbing composites: A review and prospective

  • Authors: F Meng, H Wang, F Huang, Y Guo, Z Wang, D Hui, Z Zhou
  • Journal: Composites Part B: Engineering
  • Year: 2018
  • Volume, Pages: 137, 260-277
  • Citations: 587

Title: Interface modulating CNTs@ PANi hybrids by controlled unzipping of the walls of CNTs to achieve tunable high-performance microwave absorption

  • Authors: H Wang, F Meng, F Huang, C Jing, Y Li, W Wei, Z Zhou
  • Journal: ACS applied materials & interfaces
  • Year: 2019
  • Volume, Pages: 11 (12), 12142-12153
  • Citations: 277

Title: Carbonized Design of Hierarchical Porous Carbon/Fe3O4@Fe Derived from Loofah Sponge to Achieve Tunable High-Performance Microwave Absorption

  • Authors: H Wang, F Meng, J Li, T Li, Z Chen, H Luo, Z Zhou
  • Journal: ACS Sustainable Chemistry & Engineering
  • Year: 2018
  • Volume, Pages: 6 (9), 11801-11810
  • Citations: 245

Title: Growth of NiAl‐Layered Double Hydroxide on Graphene toward Excellent Anticorrosive Microwave Absorption Application

  • Authors: X Xu, S Shi, Y Tang, G Wang, M Zhou, G Zhao, X Zhou, S Lin, F Meng
  • Journal: Advanced Science
  • Year: 2021
  • Volume, Pages: 8 (5), 2002658
  • Citations: 229

Title: Electrospun generation of Ti3C2Tx MXene@ graphene oxide hybrid aerogel microspheres for tunable high-performance microwave absorption

  • Authors: Y Li, F Meng, Y Mei, H Wang, Y Guo, Y Wang, F Peng, F Huang, Z Zhou
  • Journal: Chemical Engineering Journal
  • Year: Not provided
  • Volume, Pages: 391, 123512

Author Metrics:

  • Citations: 4,696
  • Documents: 95
  • h-index: 36

Research Timeline:

  • Completed and ongoing research projects: 30
  • Total cost of all projects: USD 1,800,000
  • Number of patents published and under process: 22
  • Journals published in SCI and SCIE index: 70
  • Editorial appointments in journals/conferences: 4
  • Cumulative impact factor of the last 3 years:

Contributions and Innovations:

Dr. Meng has contributed significantly to the field through research on controllable preparation of wave absorbers, electromagnetic loss mechanisms, and the application of wave absorbers. His focus on lightweight broadband high-efficiency absorbing materials has resulted in distinctive research outcomes.

This esteemed scientist has also proposed innovative ideas, such as intelligent anti-corrosion coatings based on salt response, visual coating local defect self-monitoring, and self-healing. His work involves in-depth research on microcapsule slow-release molecular regulation mechanisms, local defect self-monitoring, and self-healing, ultimately enhancing anti-corrosion performance.

Overall, Dr. Fanbin Meng’s research and contributions have earned him recognition, awards, and a prominent place in the global scientific community.