Siti nur ashakirin mohd nashruddin | Electrochemistry | Best Researcher Award

🌟Dr. Siti nur ashakirin mohd nashruddin, Electrochemistry, Best Researcher Award🏆

  • Doctorate at universiti tenaga nasional, Malaysia

Siti Nur Ashakirin Binti Mohd Nashruddin, also known as Dr. Siti, is a dedicated and motivated professional with expertise in biology, microbiology, electrochemical biosensors, and biomaterials. She completed her PhD in Microengineering and Nanoelectronics from the Institute Micro Engineering & Nanoelectronics, UKM. Dr. Siti has a strong background in research, particularly in the areas of electrochemistry, biosensors, and biomedical applications. She is recognized for her passion in both education and research, evident through her various teaching roles and significant contributions to scientific publications.

Author Metrics

Dr. Siti has a notable publication record, with several research articles published in prestigious journals such as Measurement, Biosensors, and International Journal of Pharmaceutical Sciences and Research. Her research articles have been well-received, as evidenced by their publication in high-impact journals. Additionally, Dr. Siti has collaborated on book chapters and conference proceedings, further showcasing her expertise and contribution to the scientific community.

ORCID Profile

Education

Dr. Siti pursued her academic journey with determination and excellence. She obtained her PhD in Microengineering and Nanoelectronics from UKM, where she conducted research on molecular imprinted polymer modification for early creatinine detection. Prior to her PhD, she completed her MSc in Research Microbiology and BSc (Hons) in Biology from UiTM, where she conducted research on the interference of trans-cinnamaldehyde emulsion on Escherichia coli and other microbiological studies.

Research Focus

Dr. Siti’s research focuses primarily on electrochemistry, biosensors, and biomaterials. Her work encompasses the development and modification of electrodes for various applications, including early detection of kidney problems, urea detection, and glucose sensing. She has also contributed to studies on antimicrobial activity and the bioactivity of natural molecules such as cinnamaldehyde.

Professional Journey

Throughout her career, Dr. Siti has held various research and teaching positions. She has worked as a post-doctoral researcher, research assistant, and graduate research assistant in prestigious institutions such as UNITEN and UKM. Additionally, she has served as a part-time tutor and high school teacher, demonstrating her commitment to education and mentoring future scientists.

Honors & Awards

Dr. Siti has been recognized for her contributions to the field of science and research. Although specific honors and awards are not mentioned in the provided information, her publication record and involvement in research projects indicate her recognition within the scientific community.

Publications Noted & Contributions

Dr. Siti’s publications span a range of topics within biology, microbiology, and electrochemistry. Her notable contributions include research articles on sensitive electrochemical detection of creatinine, urea detection, glucose biosensors, and antimicrobial activity of essential oils. She has also collaborated on studies exploring dielectrophoresis techniques and the bioactivity of natural molecules.

Harnessing Geographic Information System (GIS) by Implementing Building Information Modelling (BIM) to Improve AEC Performance Towards Sustainable Strategic Planning in Setiu, Terengganu, Malaysia

  • Source: Studies in Systems, Decision and Control
  • Publication Year: 2024
  • Type: Book chapter
  • DOI: 10.1007/978-3-031-35828-9_23
  • ISBN: 9783031358272, 9783031358289
  • ISSN: 2198-4182, 2198-4190
  • Contributors: Siti Nur Hidayatul Ain Bt. M. Nashruddin; Siti Sarah Herman; Siti Nur Ashakirin Bt. Mohd Nashruddin; Sumarni Ismail; Siow May Ling

Early detection of kidney problems through voltammetry, potentiometry, amperometry, and impedance electrochemical techniques: A comprehensive review

  • Source: Measurement
  • Publication Year: 2024-03-09
  • Type: Journal issue
  • Contributor: Siti Nur Ashakirin Mohd Nashruddin

Sensitive electrochemical detection of creatinine based on electrodeposited Molecular Imprinting Polymer modified screen printed carbon electrode

  • Source: Measurement
  • Publication Year: 2023-01
  • Type: Journal article
  • DOI: 10.1016/j.measurement.2023.112502
  • ISSN: 0263-2241
  • Contributors: Siti Nur Ashakirin; M. Hazani M. Zaid; M. Aniq Shazni M. Haniff; Asad Masood; M.F. Mohd Razip Wee

Urease immobilized electrodeposited silver reduce graphene oxide modified screen-printed carbon electrode for highly urea detection

  • Source: Measurement
  • Publication Year: 2022-06
  • Type: Journal article
  • DOI: 10.1016/j.measurement.2022.111058
  • ISSN: 0263-2241
  • Contributors: Siti Nur Ashakirin; M. Aniq Shazni M. Haniff; M. Hazani M. Zaid; Mohd Farhanulhakim M. Razipwee; Ebrahim Mahmoudi

Preliminary dielectrophoresis study: Manipulation of protein albumin and electrical quantification by using cyclic voltammetry technique

  • Source: Microelectronics International
  • Publication Date: 2021-10-27
  • Type: Journal article
  • DOI: 10.1108/mi-02-2021-0026
  • ISSN: 1356-5362
  • Contributors: Nur Shahira Abdul Nasir; Revathy Deivasigamani; Muhammad Khairulanwar Abdul Rahim; Siti Nur Ashakirin Mohd Nashruddin; Azrul Azlan Hamzah; M. Farhanulhakim M. Razip Wee; Muhamad Ramdzan Buyong

Research Timeline

Dr. Siti’s research journey began during her undergraduate studies and continued through her post-doctoral research position. She has been actively involved in research projects since 2010, contributing to various studies in the fields of biology, microbiology, and electrochemistry. Her research timeline showcases her dedication to advancing scientific knowledge and innovation.

Collaborations and Projects

Dr. Siti has collaborated with researchers from diverse backgrounds and institutions. Her involvement in collaborative projects extends beyond academia, as evidenced by her participation in industry projects such as the Petronas industrial project on catalyst synthesis and membrane electrode assembly fabrication. These collaborations highlight Dr. Siti’s ability to work effectively in multidisciplinary teams to address complex scientific challenges.

Cuong Le | Sensors | Best Researcher Award

🌟Dr. Cuong Le, Sensors, Best Researcher Award🏆

  • Doctorate at VNU-University of Engineering and Technology, Vietnam

Le Viet Cuong is a Vietnamese researcher specializing in micro-nanostructured materials and devices, particularly in the fields of magnetic, semiconductor, ferroelectric, multiferroic, and plasmonic materials. With a background in Engineering Physics and Nanotechnology, Cuong has obtained degrees at both undergraduate and graduate levels from reputable institutions in Vietnam and France. He has a strong research focus on thin film fabrication, magnetic sensors, biosensors, energy harvesting devices, and materials for environmental applications.

Author Metrics:

Google Scholar Profile

Cuong’s author metrics provide insights into the impact of his research. The H-index, total publications, total citations, and most cited publication are important indicators of his scholarly impact and influence within the academic community. Additionally, highlighting impactful contributions or awards received can further showcase his recognition in the field.

  • Total Publications (Tất cả): 332 (from 2019 onwards)
  • Total Citations (Trích dẫn): 229 (from 2019 onwards)
  • H-index: 10 (from 2019 onwards)
  • i10-index: 10 (from 2019 onwards)

These metrics reflect the scholarly impact and productivity of the author’s work specifically from 2019 onwards. The H-index of 10 indicates that the author has published at least 10 papers that have each received at least 10 citations. Similarly, the i10-index of 10 signifies that the author has published at least 10 papers that have each received at least 10 citations since 2019.

Education:

Cuong’s educational background includes a Bachelor’s degree in Engineering Physics with Honors from VNU UET, a Master’s degree in Micro-Nanotechnology from the University of Paris 11, France, and a Ph.D. in Nano materials and devices from VNU UET, Vietnam. His diverse educational experiences have equipped him with a strong foundation in both theoretical knowledge and practical skills necessary for his research endeavors.

Research Focus:

Cuong’s research interests encompass a wide range of topics within the realm of micro-nanostructured materials and devices. These include the fabrication and characterization of various materials such as magnetic, semiconductor, ferroelectric, multiferroic, and plasmonic materials. His work extends to the development of thin films, magnetic sensors, biosensors, energy harvesting devices, and environmentally friendly materials, reflecting his multidisciplinary approach to scientific exploration.

Professional Journey:

Cuong’s professional journey has been marked by diverse experiences across academia and research institutions. Starting as a researcher at VNU Key Laboratory for Micro and Nanotechnology, he has also undertaken internships and visiting researcher positions in France, Korea, and Japan. His current role as a lecturer at FEPN, VNU UET, underscores his commitment to both research and education, where he continues to contribute to the advancement of knowledge in his field.

Honors & Awards:

Cuong’s honors and awards serve as recognition of his contributions to the scientific community. Whether through academic achievements, research breakthroughs, or societal impact, these accolades highlight his dedication and excellence in his field. Recognitions such as scholarships, grants, fellowships, or prestigious awards further validate his expertise and contributions.

Publications Noted & Contributions:

Cuong’s publications represent significant contributions to the scientific literature, covering a wide range of topics within his field of expertise. Notable publications showcase key findings, methodologies, and advancements, which have contributed to the understanding and application of micro-nanostructured materials and devices. These contributions may have implications for various industries, academic fields, or societal challenges, reflecting the broader impact of his research endeavors.

Multiferroic property of 2D hybrid organic-inorganic (C6H5C2H4NH3)2NiCl4 perovskite single crystals

  • Authors: NHT L. V. Cuong, N. D. Hieu, B. D. Tu
  • Journal: Materials Transactions
  • Volume: 64
  • Issue: 9
  • Pages: 2168-2173
  • Year: 2023

Arrays of NdFeB clusters in PDMS background used to levitate T47D human cells

  • Authors: LVC N. H. Tiep, B. D. Tu
  • Journal: Materials Transactions
  • Volume: 64
  • Issue: 9
  • Pages: 2143-2146
  • Year: 2023

Levitation and position of T47D cells on a magnetic microsystem fabricated by ink jet printing

  • Authors: VCL Huy Tiep Nguyen, Van Nhat Pham
  • Journal: Journal of Applied Physics
  • Volume: 134
  • Issue: 3
  • Page: 034501
  • Year: 2023

Synthesis and microwave-absorption properties of novel Bi1/2(Na0.8K0.2)1/2TiO3/Fe3O4 composite

  • Authors: BDT Nguyen Dang Co, Bui Dai Phat, Phan Van Khai, Tran Quang Dat, Ho Thi Anh …
  • Journal: Materials Transactions
  • Volume: 64
  • Pages: 2450-2456
  • Year: 2023

Cấu trúc tinh thể và đặc tính quang điện của hạt tinh thể Perovskite lai vô cơ-hữu cơ kích thước micromet

  • Authors: NHT Lê Việt Cường, Bùi Đình Tú, Phạm Đức Thắng
  • Journal: Tạp chí phân tích Hóa, Lý và Sinh học
  • Volume: 1
  • Issue: 29
  • Pages: 120-125
  • Year: 2023

Research Timeline:

A chronological overview of Cuong’s research timeline provides context for his academic and professional journey. This timeline may include milestones such as completing degrees, participating in research projects, publishing papers, receiving grants or awards, and undertaking collaborations with other researchers or institutions. By mapping out his research trajectory, one can appreciate the evolution of Cuong’s expertise and the progression of his contributions to the scientific community.

Collaborations and Projects:

Cuong’s collaborations and projects demonstrate his ability to work across disciplines and institutions to address complex scientific challenges. Collaborations with other researchers, academic institutions, industry partners, or governmental organizations contribute to the synergistic exchange of knowledge, resources, and expertise. Ongoing or completed projects highlight Cuong’s active engagement in research endeavors aimed at advancing scientific understanding and fostering innovation in his field.