Zhongqiang Zhang | Mechanical Engineering | Best Researcher Award

Prof. Dr. Zhongqiang Zhang | Mechanical Engineering | Best Researcher Award

Dean at Jiangsu University | China

Professor Zhongqiang Zhang is a distinguished scholar in mechanical engineering whose research bridges fundamental mechanics and advanced nanotechnology. He has made significant contributions to the understanding of solid–fluid interfacial phenomena, including boundary slip, interfacial friction, and their implications for the design of next-generation micro/nano fluidic systems. As a faculty member and academic leader at Jiangsu University, his work has advanced the frontiers of nanofluidics, soft robotics, and smart material design through innovative integration of theory, computation, and experiment. Professor Zhang’s pioneering studies on graphene-based membranes, droplet dynamics, and energy-efficient fluid systems have been published in leading international journals such as Science Advances, Chemical Engineering Journal, and ACS Applied Materials & Interfaces. His research has introduced novel mechanisms for unidirectional droplet transport and enhanced bubble collection, providing new pathways for desalination, energy harvesting, and biomedical applications. Recognized for his excellence and originality, he has received multiple prestigious honors, including the ICCES Outstanding Young Researcher Award and the Jiangsu Provincial Science and Technology Awards. His projects funded by the National Natural Science Foundation of China underscore his leadership in advancing electro-mechanical coupling and interface-driven transport in microstructured materials. Professor Zhang’s work embodies the synergy of mechanics, materials, and nanotechnology, continually inspiring innovation in sustainable energy systems and intelligent fluidic devices. His scholarly achievements reflect a sustained commitment to interdisciplinary research excellence, making him a leading figure shaping the global discourse in advanced mechanical and fluid systems engineering.

Profile: Google Scholar

Featured Publications

Cheng, G. G., Jiang, S. Y., Li, K., Zhang, Z. Q., Wang, Y., Yuan, N. Y., Ding, J. N., et al. (2017). Effect of argon plasma treatment on the output performance of triboelectric nanogenerator.

Zheng, Y., Ye, H., Zhang, Z., & Zhang, H. (2012). Water diffusion inside carbon nanotubes: Mutual effects of surface and confinement.

Zhang, H., Ye, H., Zheng, Y., & Zhang, Z. (2011). Prediction of the viscosity of water confined in carbon nanotubes.

Zhang, H., Zhang, Z., & Ye, H. (2012). Molecular dynamics-based prediction of boundary slip of fluids in nanochannels.

Zhang, Z., Li, S., Mi, B., Wang, J., & Ding, J. (2020). Surface slip on rotating graphene membrane enables the temporal selectivity that breaks the permeability–selectivity trade-off.

Prof. Dr. Priya Mathur | Fluid Mechanics | Best Researcher Award

Prof. Dr. Priya Mathur | Fluid Mechanics | Best Researcher Award

Prof. Dr. Priya Mathur | Poornima Institute Of Engineering and Technology | India

Dr. Priya Mathur is a highly accomplished Professor and Head of the Department of Mathematics at Poornima Institute of Engineering & Technology, Jaipur. With extensive academic expertise and significant contributions to research, she has established herself as a leading figure in applied mathematics, fluid mechanics, and computational modeling. She has successfully combined theoretical advancements with practical applications, particularly in the areas of nanofluid dynamics, heat and mass transfer, hydrodynamic stability, biomathematics, and machine learning-based mathematical modeling. Her leadership in teaching, research, innovation, and mentoring has had a profound impact on students, scholars, and the wider research community.

Professional Profile

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Summary of Suitability

Prof. Dr. Priya Mathur is a highly accomplished academician and researcher with an outstanding record of contributions to applied mathematics and computational sciences. Her extensive research work, leadership roles, and academic achievements make her an exceptionally strong candidate for the Best Researcher Award.

Education

Prof. Dr. Priya Mathur earned her Ph.D. in Mathematics from the University of Rajasthan, Jaipur, where her doctoral work focused on “Fluid Flow Problems of Newtonian and Non-Newtonian Fluids with Heat Transfer,” laying a strong foundation for her research career. She also holds a Master’s degree in Mathematics from MDS University, Ajmer, and a Bachelor’s degree in Science, with Physics, Chemistry, and Mathematics as core subjects. Her educational background has provided her with expertise in mathematical modeling, computational techniques, and advanced analytical problem-solving skills, which she has successfully applied throughout her academic and research journey.

Experience

Prof. Dr. Priya Mathur has more than two decades of teaching and research experience in reputed institutions. She began her career as a lecturer and steadily progressed to senior academic and administrative positions. Currently serving as Professor and Head, she has been instrumental in designing academic curricula, guiding postgraduate and doctoral students, and promoting collaborative research. She has successfully supervised Ph.D. scholars as a co-supervisor and has evaluated several doctoral theses across universities. Additionally, she has organized and chaired numerous international and national conferences, delivered expert lectures, conducted workshops, and acted as Finance Chair and Publicity Chair for prestigious events. She has also played a pivotal role in various institutional activities, including serving as President of the Institution’s Innovation Council (IIC) and Coordinator of the Alumni Cell.

Research Interests

Prof. Dr. Priya Mathur research is centered on fluid mechanics, nanofluid dynamics, heat and mass transfer, and computational mathematics. She has worked extensively on mathematical modeling of micropolar and hybrid nanofluid flows, hydrodynamic stability, entropy generation, biofluids, and advanced heat transfer mechanisms. Her work also integrates artificial intelligence and machine learning techniques to solve complex engineering problems, ranging from deep learning-based image classification to predictive modeling for nanofluid properties. Her interdisciplinary approach connects engineering mathematics with applied sciences and emerging technologies, enabling impactful contributions across diverse domains.

Award

Prof. Dr. Priya Mathur has received multiple recognitions for her academic excellence, research contributions, and mentorship. She has been awarded competitive research grants under TEQIP-III for collaborative projects and faculty development programs. Her dedication as a mentor was acknowledged with the “Ridiculously Committed Mentor Award” by a leading national platform. She has received fellowships from prestigious scientific bodies, successfully published patents, and contributed significantly to academic leadership. Additionally, she has been an invited speaker at numerous national and international conferences and has delivered expert lectures in various faculty development programs, further establishing her as a prominent voice in the research community.

Publication Top Notes

  • Prediction of COVID-19 pandemic measuring criteria using support vector machine, prophet and linear regression models in Indian scenario
    Year: 2020
    Citations: 83*

  • Characteristics of Darcy–Forchheimer drag coefficients and velocity slip on the flow of micropolar nanofluid
    Year: 2021
    Citations: 53

  • Analysis of homogeneous–heterogeneous reactions in a micropolar nanofluid past a nonlinear stretching surface: semi-analytical approach
    Year: 2021
    Citations: 47

  • Magnetized string cosmological model in cylindrically symmetric inhomogeneous universe-revisited
    Year: 2008
    Citations: 39

  • Williamson nanofluid flow through porous medium in the presence of melting heat transfer boundary condition: semi-analytical approach
    Year: 2020
    Citations: 30

Conclusion

Prof. Dr. Priya Mathur outstanding contributions to teaching, research, and innovation reflect her commitment to academic excellence and societal advancement. Her interdisciplinary work, impactful publications, and innovative approaches to mathematical modeling and computational techniques make her an exemplary candidate for recognition. With a proven record of academic leadership, collaborative research, and technological integration, she embodies the qualities sought in a distinguished researcher. Her achievements demonstrate her dedication to advancing mathematical sciences while fostering innovation and mentorship, making her highly deserving of consideration for the Best Researcher Award.