Prof. Qingguo Wang | Polymer Materials | Best Researcher Award
Qingdao University of Science and Technology, China
Prof. Wang Qingguo, is a distinguished professor and doctoral supervisor specializing in environmentally friendly polymer materials. He earned his doctorate in [insert Ph.D. details, university, year] and has built a prolific career focusing on green tire tread rubber, biodegradable polymers, and biocompatible polymers. His pioneering research on carrier-assisted nano rubber particle technology solved the industrial challenge of uniform nano-silica dispersion in rubber matrices, significantly advancing sustainable tire production. Prof. Wang also innovated biobased polyester thermoplastic elastomers (BTPE) and micro-nano scale biobased polyester elastomers (BEP), combining biodegradability and biocompatibility, with applications in both industrial and biomedical sectors. Over his career, he has led 3 general projects under the National Natural Science Foundation of China, 9 provincial research initiatives, and 8 enterprise collaborations, demonstrating strong leadership and project management capabilities. He has published over 100 peer-reviewed papers, authored 21 invention patents, and received 2 notable scientific research awards, with his work cited 390 times across 25 key documents, achieving an h-index of 8. His research skills include polymer synthesis, nanocomposite design, green material optimization, and advanced characterization techniques. Prof. Wang actively mentors doctoral students and contributes to professional communities, exemplifying excellence in research and leadership. His awards and honors reflect his impact on polymer science and sustainable materials innovation. Looking forward, Prof. Wang has substantial potential to expand international collaborations, increase publications in top-tier journals, and participate in global keynote talks and editorial boards. In conclusion, Prof. Wang Qingguo is a highly deserving candidate for recognition, with exceptional achievements in polymer research, industrial innovation, and mentorship, poised to continue making transformative contributions to sustainable materials science and to nurturing the next generation of researchers worldwide.
Profile: Scopus
Featured Publications
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Improved wet skid resistance of NR/SBR composites induced by irradiation vulcanised styrene-butadiene rubber particles. (2024). Plastics, Rubber and Composites.
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Advanced biodegradable thermoplastic elastomer/reduced graphene oxide nanocomposites by in situ compositing process. (2023). Polymer Composites.