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.
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.
- 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.
- 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.