Mr. Pinaki Shankar Saha Prithu – Water Electrolysis – Young Scientist Award

Mr. Pinaki Shankar Saha Prithu - Water Electrolysis - Young Scientist Award

University of Science and Technology of China - China

Author Profile 

ORCID 

🎓 Early academic pursuits

Pinaki Shankar Saha Prithu began his educational journey with outstanding performances at dhaka residential model college, achieving perfect gpa scores in both his secondary and higher secondary school certificates (2009–2013). he pursued his undergraduate degree in textile engineering from the bangladesh university of textiles, where he laid the groundwork for his later transition into advanced material sciences. recognizing his passion for research, he pursued his m.sc. in material science and engineering from chongqing university, china, graduating with a cgpa of 3.56/4.00. currently, he is engaged in a ph.d. in material science and engineering at the university of science and technology of china, part of the prestigious chinese academy of sciences.

💼 Professional endeavors

Pinaki's career reflects a progressive shift from the textile industry to the high-impact field of material science. he initially served as a management trainee officer at victory city international holdings ltd. in guangzhou, where he gained industrial insights into textile manufacturing. his subsequent roles at labib dyeing mills and dr. petry gmbh involved applied research, process Water Electrolysis optimization, and quality assurance. this industrial grounding prepared him for his academic research roles, including his tenure as a graduate research assistant at chongqing university and currently at the university of science and technology of china, where he delves into nanomaterials and power electronics-driven catalytic technologies.

🔬 Contributions and research focus

Pinaki has made significant contributions in the field of catalysis, nanostructured materials, and energy storage, with a special emphasis on material characterization, carbon nanotubes, and mxene-based catalysts. his master’s thesis focused on the preparation of ru-co and ru-ga nano (hydr)oxide catalysts for water electrolysis. he has authored impactful Water Electrolysis research papers, including a high-profile publication in the international journal of hydrogen energy (2025), detailing the performance of ru-conc@cnt bifunctional catalysts for water splitting. his current ph.d. research expands on high entropy alloy catalysts for her, oer, aor, orr, and hor, integrating principles of power electronics to enhance electrochemical efficiency.

🌍 Impact and influence

Pinaki’s interdisciplinary expertise bridges textile engineering and advanced material science, making him a unique contributor in his field. his research on bifunctional nanohybrid catalysts addresses pressing global challenges related to renewable energy and sustainable chemical production. he also co-authored a study on textile-based soft robotics for differently-abled Water Electrolysis individuals, highlighting his commitment to inclusive innovation. his evolving work continues to influence domains where power electronics, electrocatalysis, and nanotechnology intersect, further cementing his growing reputation.

📈 Academic citations

Pinaki’s publications are gaining scholarly recognition, particularly his work published in top-tier journals such as the international journal of hydrogen energy and the journal of material science. his research on ru-ga nc@mxene catalysts and soft robotic textiles has been cited in works focused on clean energy and biomedical applications. his google scholar and researchgate profiles reflect a steadily increasing academic footprint, drawing attention from global researchers in nanomaterials and power electronics.

🔮 Legacy and future contributions

Pinaki’s trajectory illustrates a vision rooted in scientific innovation and interdisciplinary synergy. his ongoing ph.d. work is expected to generate transformative knowledge in the field of high-entropy alloy electrocatalysts. looking ahead, he aims to lead research that integrates power electronics with advanced catalytic materials to develop scalable, low-energy-demand systems for global clean energy applications. his legacy is forming around pioneering contributions to sustainable technologies, educational mentorship, and industrial-academic collaboration.

Notable Publications 

  • Title: High-performance bifunctional Ru–CoNC@CNT catalyst for efficient water splitting
    Author(s): Pinaki Shankar Saha Prithu, Jinzhou Li, Chaowen Tan, Chengzhen Hou, Xuewei Lv, Jie Dang
    Journal: International Journal of Hydrogen Energy

  • Title: Review: Textile-based soft robotics for physically challenged individuals
    Author(s): Akhiri Zannat, Mohammad Nasir Uddin, Sharif Tasnim Mahmud, Pinaki Shankar Saha Prithu, Rony Mia
    Journal: Journal of Materials Science

Dr. Sadjad Naderi – Renewable Energy Technologies – Best Researcher Award

Dr. Sadjad Naderi - Renewable Energy Technologies - Best Researcher Award

Imperial College London - United Kingdom

Author Profile 

GOOGLE SCHOLAR 

🎓 Early academic pursuits

Sadjad Naderi embarked on his academic journey with a strong foundation in engineering and materials science, leading to a ph.d. focused on failure analysis of reinforced polymer composites. his passion for understanding material behavior under extreme conditions laid the groundwork for his future innovations. throughout his studies, he demonstrated exceptional analytical skills, combining experimental and computational approaches to explore the mechanical properties of heterogeneous materials. his early research provided valuable insights into material degradation, fracture mechanics, and structural optimization, setting the stage for a career dedicated to advancing solid mechanics.

🚀 Professional endeavors

As a senior research associate at imperial college london, sadjad naderi has amassed over nine years of postdoctoral experience at renowned institutions, including university college london, sheffield university, and the university of malaya. his work spans multiple industries, from aerospace and civil engineering to electrical devices and dental applications. he has played a pivotal role in pioneering numerical and experimental analysis techniques, particularly in failure analysis, impact damage assessment, and the optimization of composite structures. his expertise in finite element method (fem), discrete element method (dem), and coupled fem-dem simulations has contributed to significant advancements in computational mechanics.

🧐 Contributions and research focus

Naderi's research has been instrumental in bridging the gap between artificial intelligence and solid mechanics. he has developed cutting-edge methodologies integrating ai-driven simulations with physics-based models, revolutionizing material and structure modeling. his work on digital twin systems for drilling technology optimization has led to substantial improvements in drilling efficiency and cost reduction. by coupling finite-discrete element methods with machine learning, he has enabled real-time prediction of rock fracture behavior, minimizing tool failure rates Renewable Energy Technologies and enhancing operational safety. his research focus extends to material design, multiphysics multiscale modeling, and ai-driven structural analysis, addressing challenges in multifunctional composites and advanced material characterization.

🏆 Accolades and recognition

Naderi’s contributions to applied solid mechanics have been widely recognized within the scientific community. with an impressive citation index of 533 on google scholar and 462 on scopus, his research impact is evident. he has published 18 high-impact journal papers and holds two patents in innovative computational approaches for material behavior prediction. as a chartered Renewable Energy Technologies engineer (ceng) and a member of the institution of mechanical engineers (imeche, uk), he has established himself as a leading expert in his field. his work has gained recognition from both academia and industry, solidifying his reputation as a trailblazer in advanced simulation techniques.

👨‍💻 Impact and influence

Naderi’s research has significantly influenced industrial practices, particularly in drilling technology. his ai-integrated digital twin system has been adopted by leading drilling companies, Renewable Energy Technologies enhancing operational efficiency and reducing tool failure rates by 30%. his innovative hybrid computational approach has created a new paradigm for digital twins, applicable across various engineering sectors requiring rapid fracture prediction. through his collaborations with top universities and industry leaders, including drillco, drillstar, mines paris tech, university of glasgow, and university of utah, he has facilitated knowledge transfer and joint research initiatives, driving innovation at the intersection of academia and industry.

🌍 Legacy and future contributions

As a visionary researcher, naderi continues to push the boundaries of applied solid mechanics. his future work aims to further integrate artificial intelligence with physics-based simulations, expanding the capabilities of digital twin systems for complex material behavior analysis. his commitment to sustainability and efficiency in engineering applications ensures that his contributions will have a lasting impact on multiple industries. by mentoring young researchers and collaborating on international projects, he is shaping the next generation of scientists and engineers, leaving behind a legacy of innovation and excellence in computational mechanics

Notable Publications 

  • Title: Meso-scale modelling of compressive fracture in concrete with irregularly shaped aggregates
    Author(s): S. Naderi, W. Tu, M. Zhang
    Journal: Cement and Concrete Research

  • Title: Meso-scale modelling of static and dynamic tensile fracture of concrete accounting for real-shape aggregates
    Author(s): S. Naderi, M. Zhang
    Journal: Cement and Concrete Composites

  • Title: Low-velocity impact damage of woven fabric composites: Finite element simulation and experimental verification
    Author(s): M.A. Hassan, S. Naderi, A.R. Bushroa
    Journal: Materials & Design

  • Title: 3D meso-scale modelling of tensile and compressive fracture behaviour of steel fibre reinforced concrete
    Author(s): S. Naderi, M. Zhang
    Journal: Composite Structures

  • Title: A novel framework for modelling the 3D mesostructure of steel fibre reinforced concrete
    Author(s): S. Naderi, M. Zhang
    Journal: Computers & Structures