Prof. Ning Yongquan | Materials Science and Engineering | Best Researcher Award

Prof. Ning Yongquan | Materials Science and Engineering | Best Researcher Award

Northwestern Polytechnical University, China

Author Profile

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🎓 Early Academic Pursuits

Yongquan Ning’s academic journey began with a strong foundation in materials science and engineering, a discipline he would eventually come to master and significantly contribute to. Born on May 14, 1982, in the People’s Republic of China, Ning’s early academic promise was evident from his undergraduate years. He completed his Bachelor of Science in Materials Science and Engineering at Nanchang Hangkong University in 2005, a period during which he was already involved in hands-on research in composite materials. His undergraduate work, which explored the fabrication and thermophysical properties of SiCp/Al composites, showcased a keen interest in materials innovation and experimentation.

Driven by a thirst for deeper knowledge and technological contribution, Ning proceeded to Northwestern Polytechnical University (NPU) in Xi’an, where he earned his Master’s degree in 2008 and subsequently a Ph.D. in 2010. His doctoral research delved into the high-temperature deformation behavior and recrystallization mechanisms of powder metallurgy (P/M) superalloys, under the mentorship of the distinguished Prof. Zekun Yao. His academic career further culminated in a postdoctoral fellowship at NPU in 2011, complemented by a year as a research associate at the prestigious Hong Kong Polytechnic University. These formative years solidified his expertise and prepared him for a lifelong contribution to materials engineering. 📘🧪

🏢 Professional Endeavors

Upon the completion of his postdoctoral training, Dr. Ning took on a faculty position at the School of Materials Science and Engineering at Northwestern Polytechnical University. From his base at NPU, he launched a range of research initiatives with significant academic and industrial relevance. Among his most enduring projects has been the study and optimization of structural-gradient materials (SGMs) used in dual-property turbine disks—an innovation pivotal to aerospace engineering.

His professional work has seamlessly blended academic inquiry with applied science. Ning has actively investigated the intricate relationships between gradient-temperature-heat-treatment parameters and their impact on the microstructure and mechanical properties of advanced alloys. His understanding of microstructure transitions, particularly the control of duplex grain regions, has enabled optimization efforts that significantly enhance the dual mechanical properties needed in high-performance turbine components.

🔬 Contributions and Research Focus

Dr. Ning’s primary research focus has revolved around the development and refinement of high-performance superalloys and structural-gradient materials. His contributions to understanding microstructural evolution during thermomechanical processing, including isothermal forging and hot compression, have offered novel insights into recrystallization behaviors and grain refinement mechanisms.

His work with powder metallurgy FGH4096 superalloys between 2006 and 2010 established foundational knowledge about the internal relationships between flow behavior and initial microstructures in HIPed (Hot Isostatically Pressed) materials. Additionally, his investigations into IN718 and GH4133A superalloys under various deformation conditions have had a lasting impact on forging technologies and alloy design strategies. 🔧🧬

🏅 Accolades and Recognition

Dr. Ning’s academic excellence has been recognized consistently throughout his educational and professional career. As a student, he was the recipient of the First-Class Scholarship from NPU for four consecutive years (2006–2009), reflecting his outstanding academic performance and research achievements. In 2008, his growing expertise was acknowledged with the Second-Class Special Scholarship from the China Air-to-Air Missile Research Institute—an endorsement of both his intellectual capacity and the practical significance of his research in national defense technology.

In 2010, he was further honored with the Second-Class Chongde Scholarship awarded by the School of Materials Science and Engineering, signifying high regard from his academic community. 🏆📜

🌍 Impact and Influence

Through his research and teaching, Dr. Ning has influenced both his peers and a new generation of materials scientists. His investigations into gradient microstructures have provided critical pathways for improving dual-property materials, which are now crucial in aerospace and energy sectors. His close collaboration with both academic and industrial institutions has helped translate complex metallurgical theory into real-world engineering applications.

Furthermore, his work has added to the global body of knowledge on powder metallurgy and thermomechanical processing, enhancing the scientific community’s ability to develop materials that are lighter, stronger, and more resilient under extreme conditions. His scientific outputs not only push the boundaries of materials performance but also contribute directly to technological competitiveness in sectors vital to national and global progress. 🌐🚀

🧭 Legacy and Future Contributions

As a scholar grounded in both theory and application, Dr. Yongquan Ning’s legacy lies in his methodical approach to solving some of the most pressing challenges in materials science. With a professional ethos rooted in curiosity, precision, and innovation, he is poised to continue contributing significantly to the development of high-performance materials for aerospace, defense, and energy systems.

Looking forward, Ning is expected to deepen his research in structural-gradient materials, possibly exploring additive manufacturing integrations and AI-driven materials design—fields that align with global trends in smart manufacturing and digital engineering. Through continued mentorship, publication, and cross-disciplinary collaboration, he stands to leave an enduring mark on both academic research and industry practices. 🔭📈

📝Notable Publications

Competition between dynamic recovery and recrystallization during hot deformation for TC18 titanium alloy

Authors: Y.Q. Ning, X. Luo, H.Q. Liang, H.Z. Guo, J.L. Zhang, K. Tan
Journal: Materials Science and Engineering: A, Vol. 635, pp. 77–85
Year: 2015

Dynamic softening behavior of TC18 titanium alloy during hot deformation

Authors: Y.Q. Ning, B.C. Xie, H.Q. Liang, H. Li, X.M. Yang, H.Z. Guo
Journal: Materials & Design, Vol. 71, pp. 68–77
Year: 2015

DDRX and CDRX of an as-cast nickel-based superalloy during hot compression at γ′ sub-/super-solvus temperatures

Authors: B. Xie, H. Yu, T. Sheng, Y. Xiong, Y. Ning, M.W. Fu
Journal: Journal of Alloys and Compounds, Vol. 803, pp. 16–29
Year: 2019

Mechanisms of DRX nucleation with grain boundary bulging and subgrain rotation during the hot working of nickel-based superalloys with columnar grains

Authors: B. Xie, B. Zhang, Y. Ning, M.W. Fu
Journal: Journal of Alloys and Compounds, Vol. 786, pp. 636–647
Year: 2019

Microstructure evolution and underlying mechanisms during the hot deformation of 718Plus superalloy

Authors: B. Xie, B. Zhang, H. Yu, H. Yang, Q. Liu, Y. Ning
Journal: Materials Science and Engineering: A, Vol. 784, Article 139334
Year: 2020

Prof. HRUDANANDA JENA | Research and development in science | Best Researcher Award

Prof. HRUDANANDA JENA | Research and development in science | Best Researcher Award

Homi Bhabha National Institute, IGCAR campus, India

Author Profile

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🌱 Early Academic Pursuits

Dr. Hrudananda Jena’s journey into the world of science began with a deep-rooted curiosity for materials and their transformations. Born on December 31, 1966, in India, his academic inclination matured into a focused pursuit of knowledge in the realm of materials science. His doctoral studies at the prestigious Indian Institute of Science (IISc), Bangalore, placed him in the heart of one of India’s leading scientific institutions. There, he explored ionic transport phenomena and the structural behavior of perovskite materials — critical components in many modern technologies — through his thesis titled “Ionic transport and structural investigations on selected perovskites synthesized by wet chemical methods.”

His strong foundation in experimental and theoretical materials science was further strengthened by his postdoctoral research at Southern University, Baton Rouge, USA, from July 2005 to August 2006. There, he contributed to a United States Department of Energy (U.S-DOE-NETL) project, further honing his skills in advanced material characterization and expanding his research horizon into energy technologies.

🧪 Professional Endeavors

Dr. Jena’s professional trajectory is marked by a distinguished association with the Indira Gandhi Centre for Atomic Research (IGCAR), one of India’s premier nuclear research facilities under the Department of Atomic Energy (DAE). Currently serving as the Head of the Materials Processing Chemistry Section and holding the senior rank of Scientific Officer (H), he plays a pivotal role in pioneering material synthesis and processing techniques essential to the atomic energy program.

Simultaneously, he contributes to the academic ecosystem as a Professor in Chemical Sciences at the Homi Bhabha National Institute (HBNI), Mumbai, stationed at the IGCAR campus. His dual role as a researcher and educator underscores his commitment to advancing science both in practice and pedagogy.

From developing cutting-edge techniques in materials processing to mentoring young scientists, Dr. Jena’s role at IGCAR spans innovation, leadership, and strategic planning in material chemistry critical to India’s nuclear fuel cycle and energy future.

🔬 Contributions and Research Focus

Dr. Jena’s research revolves around materials chemistry, solid-state ionics, wet chemical synthesis, and perovskite structures. His doctoral and postdoctoral work laid the foundation for his continuing interest in ionic conductivity and material stability — topics of central importance in energy storage devices, fuel cells, and nuclear material development.

At IGCAR, he has led efforts in processing nuclear materials using innovative wet chemical routes and advanced characterization. His expertise in solid-state synthesis and chemical methods has contributed to efficient material development techniques vital for metal fuel cycles. His work supports the safe and efficient operation of fast breeder reactors and aligns with India’s long-term nuclear energy goals.

In addition to his hands-on laboratory contributions, Dr. Jena is also known for his interdisciplinary collaborations, especially those integrating chemical sciences with physics and engineering domains.

🏆 Accolades and Recognition

Dr. Jena’s academic and professional excellence has been recognized both nationally and internationally. His selection as a Senior Research Associate on a U.S. Department of Energy project is a testament to his global scientific standing. Domestically, his continuous rise within the Department of Atomic Energy, from researcher to section head and scientific officer at the highest grade, reflects the high regard in which he is held by India’s scientific community.

Moreover, his appointment as a Professor at HBNI further affirms his stature not only as a researcher but also as a thought leader and educator in chemical sciences.

🌍 Impact and Influence

Dr. Jena’s influence reaches beyond his laboratory at Kalpakkam. His work directly supports India’s strategic energy autonomy, particularly in the nuclear sector. The materials he helps develop and process are integral to fuel safety, reactor efficiency, and long-term sustainability in nuclear power generation.

As a mentor and professor, he has inspired numerous young scientists, guiding them through advanced research and helping them understand the complex interplay between chemistry and energy systems. His participation in both national and international forums adds to his impact, enabling knowledge exchange and fostering global scientific cooperation.

🧭 Legacy and Future Contributions

With decades of rich experience, Dr. Hrudananda Jena continues to be a guiding force in the field of materials chemistry. His legacy will be defined not just by the innovations he has introduced but also by the scientific culture he fosters — one grounded in curiosity, precision, and purpose.

Looking ahead, his continued contributions to the chemical sciences, particularly in sustainable nuclear materials and energy systems, are expected to remain central to India’s scientific advancement. As the global demand for clean and safe energy intensifies, researchers like Dr. Jena will be at the forefront of crafting solutions that balance innovation with safety and environmental stewardship.

His journey stands as a beacon for aspiring scientists, showing that rigorous research, global collaboration, and a commitment to national development can come together to create a meaningful and lasting impact.

Synthesis of nano-crystalline zeolite-A and zeolite-X from Indian coal fly ash, its characterization and performance evaluation for the removal of Cs⁺ and Sr²⁺ from simulated solutions

Authors: M.K. Murukutti, H. Jena
Journal: Journal of Hazardous Materials
Year: 2022

Ionic transport and structural investigations on MSn(OH)₆ (M = Ba, Ca, Mg, Co, Zn, Fe, Mn) hydroxide perovskites synthesized by wet sonochemical methods

Authors: H. Jena, K.V.G. Kutty, T.R.N. Kutty
Journal: Materials Chemistry and Physics
Year: 2004

Innovative processing of dense LSGM electrolytes for IT-SOFCs

Authors: B. Rambabu, S. Ghosh, W. Zhao, H. Jena
Journal: Journal of Power Sources
Year: 2006

Actinide immobilization in crystalline matrix: a study of uranium incorporation in gadolinium zirconate

Authors: K.V.G. Kutty, R. Asuvathraman, R.R. Madhavan, H. Jena
Journal: Journal of Physics and Chemistry of Solids
Year: 2005

Direct single-step synthesis of phase pure zeolite Na–P1, hydroxy sodalite and analcime from coal fly ash and assessment of their Cs⁺ and Sr²⁺ removal efficiencies

Authors: M.M. Kumar, H. Jena
Journal: Microporous and Mesoporous Materials
Year: 2022

Dr. Youmin Zhu | Innovative Leadership | Best Researcher Award

Dr. Youmin Zhu | Innovative Leadership | Best Researcher Award

Shanghai AZ Science and Technology Co., Ltd.

Author Profile

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🌱 Early Academic Pursuits

From the very beginning of his academic journey, Dr. Youmin Zhu demonstrated an exceptional passion for biological sciences. His intellectual curiosity led him to pursue a Ph.D. in biological sciences, where he laid a solid foundation in molecular biology, biotechnology, and pharmacology. During his doctoral years, he cultivated a deep interest in cutting-edge therapeutic strategies, particularly focusing on emerging protein degradation technologies and the role of bioactive peptides. His academic rigor and scientific curiosity propelled him to explore innovative modalities that bridged traditional research with real-world applications in drug and skincare development. These formative experiences not only enriched his technical skills but also instilled a vision to contribute meaningfully to both science and society.

🧪 Professional Endeavors

Now serving as the R&D President and Chief Scientist at Shanghai AZ Science and Technology Co., Ltd., Dr. Zhu has emerged as a visionary leader in the field of biotechnology. Under his guidance, the organization has completed over 20 major R&D projects, encompassing the development of peptide PROTACs-based skincare ingredients, enzymes, and probiotics. These endeavors reflect not only his scientific expertise but also his ability to translate theoretical concepts into commercial and therapeutic innovations.

Dr. Zhu’s strategic direction in the biotechnology sector has turned his company into a powerhouse of innovation, where the fusion of peptide-based therapeutics and skincare science is leading to transformative solutions. His work has bridged academic excellence with industrial application, enabling breakthroughs in precision medicine and advanced cosmeceuticals.

🔬 Contributions and Research Focus

Dr. Zhu’s research focus lies at the intersection of molecular biology, pharmacological innovation, and cosmetic science, with a central emphasis on peptide PROTACs (Proteolysis Targeting Chimeras). His pioneering efforts in this area have highlighted the multi-targeting potential of peptides, their biodegradability, low toxicity, and modular design, all of which present significant advantages over conventional small molecules and antibodies.

One of his most notable contributions is the publication of the article titled “The Peptide PROTAC Modality: A New Strategy for Drug Discovery” in MedComm (2025), an SCI-indexed journal with an impressive impact factor of 10.7. This work has been widely recognized in the scientific community and is already making waves in discussions around next-generation therapeutic strategies. The article has been cited across multiple domains, further demonstrating its relevance and value in ongoing pharmaceutical research.

With a total of over 10 scientific publications, Dr. Zhu has consistently contributed to scholarly literature and advanced dialogue in biotherapeutics. In addition, he holds 18 authorized patents in China, such as Patent No. CN202410445356.X, further underscoring his commitment to translating innovation into intellectual property and practical applications.

🏆 Accolades and Recognition

Dr. Zhu’s groundbreaking work has not gone unnoticed. His scientific and entrepreneurial achievements have earned him recognition within academic, industrial, and international circles. In addition to being a contributing scientist to impactful research, he has also been actively involved in collaborative projects with prestigious institutions including Fudan University, Shanghai Jiao Tong University, and Zhejiang University.

He is also an esteemed member of professional networks such as the Chinese Overseas Alliance and the Chinese Doctoral Alliance, where he continues to contribute to thought leadership and global knowledge exchange.

Furthermore, his work was recently highlighted in a widely circulated WeChat feature and an official PDF document of professional certification, showcasing his influence in both academic and industrial spheres.

🌍 Impact and Influence

Dr. Zhu’s influence extends beyond scientific circles. His work on peptide PROTACs is helping redefine how we understand and treat complex diseases. By leveraging the natural degradation mechanisms of the body through targeted proteolysis, his innovations are creating new avenues for the treatment of conditions previously considered untreatable.

Equally impressive is his impact on precision skincare, where bioengineered peptide-based compounds are providing customized, low-toxicity solutions for skin health. This cross-disciplinary impact, from health to beauty, positions Dr. Zhu as a transformative figure in the biotech and wellness industries.

His articles, particularly those involving collaborative authorship with Yu Dai and Yuncai Tian, have sparked global interest, and the citation of his MedComm article continues to grow. These ripple effects reflect the profound scientific and commercial value of his work.

🌟 Legacy and Future Contributions

As Dr. Zhu continues to push boundaries, the future of peptide-based therapeutics and cosmeceuticals looks increasingly promising. He is paving the way for a new era of precision medicine, where treatments are not only more effective but also safer and more sustainable.

Looking ahead, Dr. Zhu plans to scale his innovations globally and expand his company’s reach into international markets, bringing Chinese biotechnology to the global stage. His future goals include mentoring young scientists, fostering new academic-industry partnerships, and developing a global research ecosystem centered on peptide technologies.

Through his unwavering dedication and strategic foresight, Dr. Youmin Zhu is building a legacy that will inspire a generation of researchers and innovators. His contributions are not only advancing science but also shaping the future of healthcare and skincare for the better. 🌐

The Peptide PROTAC Modality: A New Strategy for Drug Discovery

Authors: Youmin Zhu, Yu Dai, Yuncai Tian
Journal: MedComm
Year: 2025

New Nobel Prize MicroRNA Technology Is Opening up a New Era of Precision Skincare

Authors: Youmin Zhu, Yu Dai, Xiaojing Wang, Shengjie Zhu, Yuncai Tian, Yong Tian
Journal: Advanced Journal of Nursing
Year: 2025

New peptide PROTAC is triggering a revolution in precise targeted skincare

Authors: Youmin Zhu, Yu Dai, Yuncai Tian, Yong Tian
Journal: Preprint (platform not specified)
Year: 2024

Advances in CRISPR/Cas9

Authors: Youmin Zhu, Syed Hassan
Journal: BioMed Research International
Year: 2022

Comparative Transcriptomics Reveals Jasmonic Acid-Associated Metabolism Related to Cotton Fiber Initiation

Authors: Liman Wang, Youmin Zhu, Wenjing Hu, Xueying Zhang, Caiping Cai, Wangzhen Guo
Journal: PLOS ONE
Year: 2015