Dr. Maria Muzamil Memon | Robotics | Research Excellence Award

Dr. Maria Muzamil Memon | Robotics | Research Excellence Award

Harbin Institute of Technology | China

Dr. Maria Muzamil Memon is a dedicated researcher and postdoctoral fellow at the Harbin Institute of Technology, China, specializing in micro-electro-mechanical systems , microfluidics, and flexible sensor technologies. she earned her Phd in electronic engineering from the university of electronic science and technology of China, where she focused on aln-based surface acoustic wave sensors and significantly improved pressure sensitivity through innovative structural design, validated via comsol-based finite element analysis. Her academic journey includes a master’s degree in mechanical engineering from Harbin institute of technology and a bachelor’s degree in electronics engineering from Mehran University of engineering and technology. Throughout her career, she has worked extensively on microfluidic chip fabrication, biomedical device development, and multiphysics simulations, Robotics while also supervising undergraduate and postgraduate students. Dr. Memon has received multiple prestigious awards, including several academic achievement and excellent performance awards from UESTC, and she is a two-time recipient of the Chinese government scholarship. her research impact is reflected in 141 citations, an h-index of 7, and 6 documented publications, i10-index, demonstrating her growing influence in the fields of mems sensors, sensing materials, and microfluidic systems.

Profile: Google Scholar

Featured Publications

Memon, M. M., Liu, Q., Manthar, A., Wang, T., & Zhang, W. (2023). Surface acoustic wave humidity sensor. Micromachines, 14(5), 945.

Memon, M. M., Hongyuan, Y., Pan, S., Wang, T., & Zhang, W. (2022). Surface acoustic wave humidity sensor based on hydrophobic polymer film. Journal of Electronic Materials, 51(10), 5627–5634.

Memon, M. M., Pan, S., Wan, J., Wang, T., & Zhang, W. (2021). Highly sensitive thick diaphragm-based surface acoustic wave pressure sensor. Sensors and Actuators A: Physical, 331, 112935.

Memon, M. M., Pan, S., Wan, J., Wang, T., Peng, B., & Zhang, W. (2022). Sensitivity enhancement of SAW pressure sensor based on the crystalline direction. IEEE Sensors Journal, 22(10), 9329–9335.

Memon, M. M., Pan, S., Wan, J., Wang, T., Peng, B., & Zhang, W. (2022). Sensitivity enhancement of SAW pressure sensor based on the crystalline direction. IEEE Sensors Journal, 22(10), 9329–9335.

Dr. Md. Abdul Raheem Junaidi | Smart Manufacturing Systems | Best Researcher Award

Dr. Md. Abdul Raheem Junaidi | Smart Manufacturing Systems | Best Researcher Award

Muffakham Jah College of Engineering & Technology | India

Dr. Md. Abdul Raheem Junaidi is an accomplished assistant professor in the department of mechanical engineering at Muffakham Jah college of Engineering & Technology, Hyderabad, with many years of academic and research experience, complemented by  years in the industry. He holds a Ph.d. in Mechanical Engineering from the birla institute of technology and science Pilani, and an M.E. in turbo machinery from Osmania university, Hyderabad. his expertise spans cad and cae tools such as ansys, solidworks, and autocad, alongside strong contributions to curriculum development, research writing, and placement coordination. a prolific researcher, Dr. junaidi has published 17 documents with 39 citations and holds an h-index of 4. he is notably the first ph.d. recipient to secure two indian patents from his doctoral research. his scholarly achievements include 10 scopus-indexed papers and over 25 international peer-reviewed publications. recognized for his excellence, he received the young engineer of the year award from the institution of engineers and the government of Telangana. Through his teaching, mentorship, and active participation in NBA, NAAC, and Aicte accreditation processes, Dr. Junaidi continues to make a Smart Manufacturing Systems lasting impact on mechanical engineering education and research in India.

Profiles: Scopus | Orcid | Google Scholar

Featured Publications

Junaidi, M. A. R. (2025). A versatile biomedical device employed for diverse applications in minimally invasive surgical procedures. International Journal of Engineering Systems Modelling and Simulation.

Kumaravel, S., Raman, P., Kalangi, R. R., Selvameena, R., Gehani, H., Junaidi, M. A. R., & Yuvaperiyasamy, M. (2025). Analysing the efficiency of a single-slope solar still and the effects of glass cover cooling and circular cross-section hollow fins. Journal of Environmental Nanotechnology.

Koti, V., Asha, P. B., Sharma, S., Kavitha, K., Sankarathil, A. J., Junaidi, M. A. R., Shashidhara, L. C., Razak, A., Raju, K., & Manjunatha, B., et al. (2025). Fabrication and wear characteristics of Al6066-boron carbide particulate composites. Journal of the Institution of Engineers (India): Series D.

Junaidi, M. A. R. (2025). Influence of advanced composite phase change materials on thermal energy storage and thermal energy conversion. Journal of Thermal Analysis and Calorimetry.

R, V. K., P. B, A., Junaidi, M. A. R., T, J., K, R., Goudar, D. M., Pinto, D. G., S. R, S. A., Bhat, S. K., & L. C, S., et al. (2025). Influence of zirconium carbide particles on the mechanical characteristics of heat treated Al7475 alloy. Scientific Reports.