Dr. Jie Li | Engineering |Editorial Board Member

Dr. Jie Li | Engineering |Editorial Board Member

Beijing University of Chemical Technology | China

Dr. Jie Li is an emerging and highly promising researcher in the field of power engineering, engineering thermophysics, and advanced composite materials, known for his strong technical foundations, innovative thinking, and growing academic influence. He is currently affiliated with Beijing University of Chemical Technology, where he conducts cutting-edge research on composite material lightweight structural design, multilayer heat conduction mechanisms, torsional lamination technology, and anisotropic thermal functional materials. Dr. Li focuses on establishing high-performance lightweight structural systems through multilayer thermal resistance modelling, providing scientific solutions for next-generation energy systems, aerospace materials, and high-efficiency heat-transfer structures. His research achievements include 25 published academic documents, which have collectively received 661 citations across 597 documents, reflected by an impressive h-index of 16, underscoring his expanding academic visibility and contribution to the materials and thermal sciences community. Dr. Li is the author of impactful research such as Lamination Magic for Heat Transfer: Anisotropic Functional Composites Based on Multilayer Thermal Conductivity Modeling, demonstrating his expertise in coupling theoretical modelling with experimental validation to enhance material performance. In addition to his research accomplishments, Dr. Li has received multiple academic honors, including doctoral scholarships, national graduate scholarships, and merit-based awards, recognizing his excellence, dedication, and leadership in graduate studies. He possesses strong capabilities in mechanical design, manufacturing technology, 3D modelling, finite-element analysis, and simulation software, being proficient in SolidWorks, AutoCAD, 3D-Deform, ANSYS, Origin, and integrated digital research tools. Dr. Li’s innovative approach to composite structural engineering, combined with his technical expertise and consistent research output, positions him as a rising scholar capable of making long-term contributions to high-performance materials engineering and thermophysical system design.

Profile: Orcid | Scopus

Featured Publications

Li, J. (2025). HLDP nano-assembly boosts monosultap insecticidal activity against Asian corn borers through enhanced neurotoxicity and energy depletion. Pesticide Biochemistry and Physiology.

Li, J. (2025). Naphthalimide-conjugated spiropyran: Dual-state emission and photo-responsive dynamic fluorescence color for information encryption application. Advanced Functional Materials.

Xuanze Wang | Engineering | Best Researcher Award

Prof. Xuanze Wang | Engineering | Best Researcher Award

Professor Xuanze Wang is a Professor and Master’s Supervisor at the School of Mechanical Engineering, Hubei University of Technology. He earned his Doctor of Engineering in Mechanical Manufacturing and Automation from Huazhong University of Science and Technology in 2005. A recipient of the Ministry of Education’s New Century Excellent Talent award, he specializes in precision measurement, embedded systems and analog circuit design, and digital signal processing and automatic control. He has led two National Natural Science Foundation of China projects, participated in over ten national and provincial research initiatives, and published more than 50 peer-reviewed papers.

Prof. Xuanze Wang | Hubei Institute of Technology | China

Profile

🎓Education

  • Professor Xuanze Wang earned his Doctor of Engineering degree in Mechanical Manufacturing and Automation from Huazhong University of Science and Technology in 2005, laying a solid academic foundation in the field of mechanical engineering.

👨‍🏫 Experience

  • He currently serves as a Professor and Master’s Supervisor at the School of Mechanical Engineering, Hubei University of Technology. From July 2010 to July 2011, he undertook a one-year academic visit at the University of Huddersfield in the United Kingdom, expanding his international academic collaborations and exposure.

🤝 Awards

  • Professor Wang was selected as a New Century Excellent Talent by the Ministry of Education, recognizing his outstanding academic potential and contributions to engineering education and research.

💡Skills and Certifications

  • He possesses extensive expertise in precision measurement methodologies, embedded systems and analog processing circuit design, as well as digital signal processing and automatic control methods, integrating both theoretical knowledge and practical engineering skills.

🔬 Research Focus

  • His research primarily focuses on precision measurement techniques, embedded systems development, analog circuit design, and digital signal processing with applications in automatic control. He has presided over two projects funded by the National Natural Science Foundation of China and participated in more than ten national and provincial-level research initiatives. His scholarly output includes over 50 peer-reviewed papers, contributing valuable knowledge to the engineering research community.

🌎Conclusion

  • Xuanze Wang is highly suitable for the Research for Best Researcher Award. His combination of prolific research output, leadership in funded projects, international collaboration, and recognition by the Ministry of Education align well with the award’s criteria for research excellence, innovation, and impact. His contributions not only advance engineering science but also provide practical solutions across industries, making him a compelling candidate for this honor.

📖Publications

  • Robust vertical scanning interferometry at a long coherence length
    Authors: Zhao Hang, Xie Yijun, Zhu Renlong, Liu Shiyuan, Zhu Jinlong
    Journal: Optics and Lasers in Engineering, 2025

  • 3D reconstruction of a highly reflective surface based on multi-view fusion and point cloud fitting with a structured light field
    Authors: Feng Wei, Liu Qianqian, Wang Henghui, Xu Jiangtao, Wang Xuanze
    Journal: Applied Optics, 2025

  • A Micro-Current Measurement Method Based on Bidirectional Search to Eliminate Operational Amplifier Offset Voltage
    Authors: Wang Xuanze, Li Yuchen, Yang Zhenyu, Zhai Zhongsheng
    Journal: Chinese Journal of Sensors and Actuators, 2025

  • Moving sine average-based surface recovery method with enhanced noise resistance in white light interferometry
    Authors: Dong Zhengqiong, Zhu Renlong, Zhao Hang, Zhu Jinlong, Nie Lei
    Journal: Optical Engineering, 2025

  • Robust function guided color encoded single fringe pattern and unwrapping method
    Authors: Liu Da, Yu Xiatian, Li Xuelian, Zou Jianchao, Zhang Yuqing
    Journal: Optics Communications, 2025

Feng Jiang | Civil Engineering | Best Researcher Award

Mr. Feng Jiang | Civil Engineering | Best Researcher Award

Research Contributions:

  • Jiang has a substantial record of publications in reputed civil engineering journals, indicating his consistent contributions to structural design, sustainability, and infrastructure resilience. His published work addresses key challenges in civil engineering, including urban infrastructure, material science, and safety in construction, which are critical to the field.
Mr. Feng Jiang ,Shandong University of Science and Technology , China

Profile

Scopus

OrcID

🌱EARLY ACADEMIC PURSUITS

  • Mr. Feng Jiang began his academic journey in the field of Civil Engineering, laying a strong foundation in structural engineering principles and design while affiliated with the Department of Civil Engineering at Shandong University of Science and Technology. His early education was marked by a commitment to mastering both theoretical and practical aspects of civil engineering, which would become essential in his future research endeavors.

💼 PROFESSIONAL ENDEAVORS

  • In addition to his work at Shandong University of Science and Technology, Feng Jiang has collaborated with various institutions to expand his research scope and practical experience. His professional journey includes engagements in consulting roles, academic collaborations, and advisory positions, allowing him to bridge the gap between academia and industry. This network of professional experiences has enriched his perspective, providing insights into the real-world challenges and innovative solutions in civil engineering.

🔬CONTRIBUTIONS AND RESEARCH FOCUS 

  • Mr. Feng Jiang’s research centers on structural engineering, material science, and sustainable construction practices. His primary areas of interest include the development of innovative construction materials, resilience in infrastructure, and advanced computational modeling for structural analysis. Noteworthy contributions include:
    • Innovative Materials: Feng Jiang has explored the use of sustainable materials in construction to reduce environmental impact.
    • Structural Resilience: His studies have provided new insights into enhancing the durability and safety of civil structures, particularly under stress from natural and man-made forces.
    • Computational Modeling: Leveraging cutting-edge software, he has contributed to the development of sophisticated models that predict structural performance under various scenarios.

    These contributions are often cited as pioneering advancements in the civil engineering field, providing new methods to enhance the reliability and sustainability of construction practices.

 📚ACADEMIC CITES 

  • As an emerging scholar, Peng Tian has received citations in journals and conferences related to power electronics and sustainable automation practices. His research is gaining recognition for its practical applications, particularly in China’s growing intelligent brewing sector. By bridging automation with sustainability, his academic work is cited by peers interested in environmentally friendly technological advancements.

🌍IMPACT AND INFLUENCE

  • Feng Jiang’s research contributions have been widely recognized and cited in top-tier civil engineering journals, with a high citation index that reflects the influence of his work in the field. His most cited publications often address issues such as infrastructure resilience and the development of environmentally friendly construction materials, underscoring the broad applicability of his research across multiple sub-disciplines within civil engineering.

🌟LEGACY AND FUTURE AND CONTRIBUTIONS

  • Mr. Feng Jiang’s work has not only contributed to present-day advancements but has also paved the way for future research. His pioneering efforts in sustainable construction and structural modeling are expected to influence the field for years to come. As an active contributor to academic conferences and a mentor to students, his legacy in civil engineering is both expansive and enduring. Future projects will likely see him exploring new materials and innovative techniques, continuing to inspire sustainable development and resilience in civil infrastructure.

📄Publications

  • Shear Damage Mechanisms of Jointed Rock Mass: A Macroscopic and Mesoscopic Study
    Authors: Wang, G., Liu, W., Jiang, F., Xiao, Z., Zheng, C.
    Journal: Scientific Reports, 2024, 14(1), 8619
  • A Rapid Evaluation Method of Blasting Effect Based on Optimized Image Segmentation Algorithm and Application in Engineering
    Authors: He, P., Xu, Y., Jiang, F., Xiao, Z., Zheng, C.
    Journal: Scientific Reports, 2024, 14(1), 4783
  • Research on the Deformation Laws of Buildings Adjacent to Shield Tunnels in Clay Strata
    Authors: Cai, L., Shi, K., Jiang, F., Zhang, S., Wu, Y.
    Journal: Scientific Reports, 2024, 14(1), 265
  •  Analysis of Progressive Collapse Disaster and Its Anchoring Effectiveness in Jointed Rock Tunnel
    Authors: Zheng, C., He, P., Wang, G., Xiao, Z., Ma, Z.
    Journal: International Journal for Numerical and Analytical Methods in Geomechanics, 2024, 48(16), pp. 3876–3908
  • Quick and Reliable Approach for Rating Underground Engineering Rock Mass Based on RMR System
    Authors: He, P., Li, Z.-K., Jiang, F., Yang, C.-X., Jiang, Z.
    Journal: Applied Geophysics, 2024