Hao Xu | Intermetallics | Excellence in Research Award

Prof. Hao Xu | Intermetallics | Excellence in Research Award 

Prof. Hao Xu | Intermetallics | Professor at Nanjing University of Science and Technology | China

Intermetallics form the cornerstone of Prof. Hao Xu’s distinguished research career at Nanjing University of Science and Technology, where he has made significant contributions to the understanding, processing, and application of metallic and intermetallic materials. Prof. Hao Xu earned his B.S. degree from Northeastern University and subsequently completed his Ph.D. in Materials Processing Engineering at the Institute of Metal Research, Chinese Academy of Sciences, where he focused on phase transformation mechanisms, hot working, and microstructural evolution of advanced materials. Over the years, Prof. Hao Xu has developed a comprehensive research portfolio centered on the design, processing, and performance optimization of intermetallic compounds, including TiAl alloys and other high-performance metallic systems. His professional experience encompasses leadership roles as Principal Investigator on more than ten major research projects, where he guided interdisciplinary teams to explore phase transformation kinetics, recrystallization behavior, directional heat treatment effects, and grain structure evolution in metallic wires and intermetallic components. Prof. Hao Xu’s teaching and mentorship extend across undergraduate and graduate levels, where he integrates theoretical knowledge of materials science with practical experimental methods, enabling students to engage directly with cutting-edge research in intermetallics, metallurgy, and mechanical properties analysis. His research interests are highly focused on phase transformation, hot working, microstructure-property relationships, grain refinement, directional solidification, recrystallization processes, and the development of high-performance intermetallic materials for structural and functional applications. Prof. Hao Xu possesses advanced research skills in metallography, scanning and transmission electron microscopy, X-ray diffraction, thermal analysis, mechanical testing, computational modeling of microstructural evolution, and process optimization for intermetallic compounds. His prolific contributions include over ten peer-reviewed publications in high-impact journals such as the Journal of Materials Science & Technology and Corrosion Science, as well as more than ten authorized invention patents that underscore his innovative approach to material processing and performance enhancement. Prof. Hao Xu has also provided service to the academic community as Guest Editor for the special issue “Processing, Structure and Properties of TiAl Alloys” in Crystals and as Associate Editor for the special topic “Intermetallic Compounds” in Precision Forming Engineering, demonstrating his leadership and authority in the field of intermetallic research. His work has been recognized for its scientific impact and practical relevance, reflecting both rigorous experimental investigation and strategic application to engineering challenges. Prof. Hao Xu’s ongoing dedication to research excellence, interdisciplinary collaboration, and the advancement of intermetallic materials continues to influence the field, inspire emerging researchers, and provide critical insights into the structure–property relationships and processing strategies essential for the next generation of metallic and intermetallic materials. Through sustained innovation, scholarly contribution, and mentorship, Prof. Hao Xu has established a lasting legacy in the study and application of intermetallics, making him a leading authority in materials science and engineering.

Profile: ORCID

Featured Publications

  1. Xu, H. (2025). Study on the Secondary Recrystallization Process and Influencing Factors of 4N Pure Copper Wires.
  2. Xu, H. (2025). Mechanism of Grain Structure Formation in Pure Copper Wire During Directional Heat Treatment.
  3. Xu, H. (2025). Study on Microstructure Evolution and Influencing Factors of Pure Copper Wire After Directional Heat Treatment.

 

Tejendra Kumar Gupta | Smart Polymeric Materials | Best Researcher Award

Dr. Tejendra Kumar Gupta | Smart Polymeric Materials | Best Researcher Award 

Assistant Professor  | Amity University Noida, India | India 

To evaluate whether Dr. Tejendra Kumar Gupta is suitable for the Best Researcher Award based on the provided information, we can assess his strengths, identify areas for improvement, and draw a conclusion. Here is an analysis following the specified structure:

Strengths

  1. Research Expertise and Impact:
    • Dr. Gupta has a robust research background in carbon nanostructures, polymer nanocomposites, and their applications, including strain sensing, EMI shielding, and biomedical uses. His work has led to a significant number of peer-reviewed publications (37) with a high impact factor and substantial citations (2616) and an h-index of 24. This indicates the high quality and influence of his research in the field.
  2. Awards and Recognition:
    • He has received notable awards such as the Dr. D.S. Kothari Postdoctoral Fellowship and recognition for best poster presentations. His accomplishments in both national and international conferences underscore his reputation in the scientific community.
  3. Professional Experience and Contributions:
    • His diverse experience, from postdoctoral research positions to his current role as an Assistant Professor and Programme Leader, highlights his leadership and expertise. His involvement in prestigious research projects and collaborations with institutions like MIT and Massachusetts General Hospital further exemplify his professional stature.
  4. Academic and Editorial Roles:
    • Dr. Gupta’s roles as an academic editor and editorial board member for respected journals illustrate his commitment to advancing scientific knowledge and his role in shaping the field. His teaching responsibilities across multiple levels also demonstrate his dedication to education and mentorship.
  5. Grants and Funding:
    • Securing research grants such as those from CST-UP shows his ability to attract funding and manage substantial research projects, reflecting his ongoing contributions and future potential in his field.

Areas for Improvement

  1. PhD Supervision:
    • Dr. Gupta has not yet supervised any PhD students but currently has two under supervision. Increasing his PhD supervision experience could further establish his role as a leading researcher and mentor in his field.
  2. Broader Research Impact:
    • While his publications and citations are impressive, exploring emerging interdisciplinary areas or expanding research into new applications of his work could enhance his impact. For instance, integrating his research with industry applications or new technologies might increase its relevance and reach.
  3. Collaboration Expansion:
    • Though he has national and international collaborations, actively seeking new partnerships, especially with different sectors or research fields, could broaden the scope and impact of his research.

Conclusion

Dr. Tejendra Kumar Gupta exhibits many strengths that make him a strong candidate for the Best Researcher Award. His extensive publication record, significant citations, awards, and leadership roles in academia and research demonstrate his profound impact in his field. While there are areas for improvement, such as gaining more experience in PhD supervision and expanding research collaborations, these are relatively minor compared to his overall achievements.

Short Biography 🧑‍🔬

Dr. Tejendra Kumar Gupta is a distinguished researcher and academician based at Amity University, India. He specializes in the synthesis of carbon nanostructures, polymer nanocomposites, and their functional applications in fields such as EMI shielding, strain sensing, and biomedicine. His career is marked by significant contributions to the advancement of nanomaterials and composites through his various research roles and academic positions.

Profile 

Google Scholar

Education 🎓

  • PhD in Physical Science: Academy of Scientific and Innovative Research (AcSIR)-CSIR-National Physical Laboratory, New Delhi, India. Dissertation focused on carbon nanostructures reinforced polymer nanocomposites. (Awarded)
  • M.Tech. in Nanoscience & Technology: Guru Jambheshwar University of Science & Technology, Hisar, India, 2008. CGPA: 7.56
  • M.Sc. in Physical Chemistry: Aligarh Muslim University, Aligarh, India, 2005. Percentage: 66.16%
  • B.Sc. (Honors) in Chemistry: Aligarh Muslim University, Aligarh, India, 2003. Percentage: 63.47%

Experience 💼

  • Assistant Professor & Programme Leader: Amity Institute of Applied Sciences, Amity University, Noida, India (Sept 2017 – Present)
  • Postdoctoral Researcher: Masdar Institute of Science & Technology, Abu Dhabi, UAE (May 2016 – June 2017)
  • Postdoctoral Researcher: Banaras Hindu University, Varanasi, India (Aug 2014 – May 2016)
  • Senior Research Fellow: CSIR-National Physical Laboratory, New Delhi, India (April 2010 – March 2014)
  • Project Assistant: CSIR-National Physical Laboratory, New Delhi, India (Oct 2008 – March 2010)

Research Interests 🔬

Dr. Gupta’s research focuses on the synthesis and functionalization of carbon nanostructures (including CNTs and graphene), polymer nanocomposites, and their applications in EMI shielding, strain sensing, and biomedical fields. His work is pivotal in developing advanced materials for various high-tech applications.

Awards 🏆

  • Dr. D.S. Kothari Postdoctoral Fellowship Award (August 2014)
  • Qualified CSIR SRF (Jan 2010)
  • Best Poster Award: “Effect of Ni, Co incorporated SWCNTs soot on epoxy composites” (Carbon Materials 2012, Mumbai, India)
  • 2nd Best Poster Presentation: National Science Day Celebration (CSIR-NPL, New Delhi, India, Feb 2014)

Publications 📚

  1. Strong linear piezoresistive response of carbon nanostructures reinforced hyperelastic polymer nanocomposites, Composites Part A: Applied Science and Manufacturing, 113, 141-149 (2018).
  2. Advances in carbon-based nanomaterials for bio-medical applications, Current Medicinal Chemistry (2019).
  3. Excellent storage stability and sensitive detection of neurotoxin quinolinic acid, Biosensors & Bioelectronics, 90: 224-229 (2017).
  4. Microwave-Assisted Synthesis of Boron and Nitrogen co-doped Reduced Graphene Oxide, ACS Applied Materials & Interfaces, 7: 19831-19842 (2015).
  5. Superior nano-mechanical properties of reduced graphene oxide reinforced polyurethane composites, RSC Advances, 5: 16921-16930 (2015).