Konduru Ashok Kumar Raju | Biomaterials | Editorial Board Member

Dr. Konduru Ashok Kumar Raju | Biomaterials | Editorial Board Member

National Institute of Technology Rourkela | India

Dr. Konduru Ashok Kumar Raju is a researcher in biomaterials whose work integrates mechanical engineering, materials science, and biomedical innovation. He holds a strong academic foundation with bachelor's and master's degrees in mechanical engineering, followed by advanced research training in biomaterials with a focus on functionalized coatings for medical implants. With professional experience as an educator and researcher in mechanical engineering departments, he has contributed to CAD/CAM, heat transfer, implant surface engineering, and computational modeling. His scholarly output includes studies on corrosion-resistant Ti6Al4V coatings, biomaterial characterization, antibacterial surface modifications, biodiesel engine performance, and finite element modeling of biological tissues. Demonstrating a multidisciplinary research profile, he has served as a scientific peer reviewer for leading publishers, strengthening the integrity of scholarly communication. His work has earned notable recognitions, including national engineering awards and fellowships supporting scientific merit. With 102 citations, an h-index of 6, and an i10-index of 5, his publications continue to influence advancements in biomaterial coatings and medical implant technologies. His ongoing research aims to enhance implant biocompatibility, integrate antibacterial strategies, and develop novel materials for regenerative and tissue engineering applications. His continued contributions are shaping the future of biomaterials research, healthcare innovation, and academic excellence.

Professional Profiles: Scholar |Scopus |Linkedin |Researchgate

Featured Publications

Raju, K. A. K., & Biswas, A. (2023). Corrosion behavior of self-organized TiO₂ nanotubular arrays grown on Ti6Al4V for biomedical applications. Materials Chemistry and Physics, 305, 128011.

Raju, K. A. K., & Biswas, A. (2025). Surface modifications and coatings to improve osseointegration and antimicrobial activity on titanium surfaces: A statistical review over the last decade. Journal of Orthopaedics.

Raju, K. A. K., & Biswas, A. (2024). Structural and corrosion analysis of copper/chitosan coating on nanotubular TiO₂/Ti6Al4V implant surface. Surface and Coatings Technology, 482, 130673.

Raju, K. A. K., & Biswas, A. (2024). Evaluation of structural and corrosion behavior of chitosan/silver coating on Ti6Al4V/TiO₂ nanotubular surface. Surface and Coatings Technology, 476, 130262.

Raju, K. A. K., Reddy, M. V. K., & Nagaraja, A. (2014). Design optimization of cross flow heat exchanger. International Journal of Engineering Research & Technology (IJERT), 3(2), 26–33.

Raju, K. A. K., Biswas, A., Singh, A. K., Mahton, Y., & Saha, P. (2024). Enhanced corrosion resistance of 58S bioglass integrated TiO₂ nanotubular arrays. Next Nanotechnology, 6, 100070.

Deep Sankar | Surface coating for Biomedical implants | Best Researcher Award

Mr. Deep Sankar - Surface coating for Biomedical implants - Best Researcher Award 🏆

National Institute of Technology, Karnataka - India

Professional Profiles

Early Academic Pursuits

His academic journey began with a solid foundation in mechanical engineering at JSSATE, Bengaluru, where he completed his Bachelor of Engineering. During this time, he showcased his aptitude for innovation through projects like developing a portable wind charger mounted on an express train, demonstrating his early interest in renewable energy solutions. His commitment to excellence was evident with distinctions throughout his undergraduate years, indicating a strong academic foundation and a thirst for knowledge.

Professional Endeavors

His professional journey reflects a diverse range of experiences, from teaching assistantships at NITK, Surathkal, to providing guidance at Flipclass, Bengaluru, and doubt-solving at Aakash EduTech Private Limited. His involvement in organizing workshops and presenting on topics like blood-compatibility assessment of biomaterials underscores his interdisciplinary approach, bridging mechanical engineering with biomedical applications. Additionally, his hands-on experience with advanced equipment at CRF, NITK, highlights his technical proficiency and readiness to engage in cutting-edge research.

Contributions and Research Focus in Surface coating for Biomedical implants

His research focus lies at the intersection of surface engineering, biomaterials, Surface coating for Biomedical implants and orthopedic technology. His Ph.D. dissertation on improving the properties of thermally sprayed hydroxyapatite bio-ceramic coatings demonstrates his commitment to advancing materials science for orthopedic applications. Through his work, he aims to enhance the performance and longevity of implants, contributing to the field of orthopedic technology and improving patient outcomes. His expertise in modeling enablers for risk mitigation in green supply chain management further underscores his interdisciplinary approach, addressing sustainability challenges in manufacturing systems.

Accolades and Recognition

His dedication to academic and research excellence has been recognized through various accolades and scholarships, including the MHRD full-time scholarship for his M.Tech studies and the Institute Assistance Scholarship for his Ph.D. duration. His exceptional performance in examinations like the Graduate Aptitude Test in Engineering (GATE) and various entrance tests for engineering admissions underscores his intellectual prowess and determination. Additionally, receiving a merit certificate from the CBSE board highlights his early academic achievements and sets a precedent for his future endeavors.

Surface coatings for biomedical implants play a crucial role in improving the performance, biocompatibility, and longevity of these devices within the human body. These coatings are designed to address various challenges such as promoting osseointegration (the integration of the implant with surrounding bone tissue), preventing bacterial adhesion.

Impact and Influence

His contributions extend beyond the realm of academia, with his teaching experiences at various levels shaping the minds of future engineers and scientists. His involvement in organizing workshops and seminars not only facilitates knowledge dissemination but also fosters collaboration within the research community. By engaging in interdisciplinary research and addressing real-world challenges, Shankar seeks to make a tangible impact on society, particularly in the fields of healthcare and sustainable manufacturing.

Legacy and Future Contributions

As he continues to pursue his research endeavors, his legacy is defined by a commitment to excellence, innovation, and societal impact. Through his contributions to surface engineering, biomaterials, Surface coating for Biomedical implants and orthopedic technology, he aims to leave a lasting imprint on the field, improving healthcare outcomes and advancing the frontiers of science and engineering. With a solid foundation in academia, a wealth of professional experiences, and a drive for continuous learning, his future contributions hold the promise of transformative change in his chosen fields of expertise.

Notable Publications