Wang Xi | Flame retardant Polymer | Best Researcher Award

Prof Dr. Wang Xi | Flame retardant Polymer | Best Researcher Award

Dr. Wang Xi πŸŽ“, an Associate Professor and Master’s Supervisor, specializes in environmentally friendly high-performance flame-retardant materials and rare earth permanent magnetic materials. Since 2014, he has been actively engaged in research and academia, publishing over 20 SCI-indexed papers with 400+ citations πŸ“š. He has also authored a monograph and secured 3 national invention patents. Currently, he is leading multiple funded projects focused on flame-retardant mechanisms. His contributions to materials science earned him a spot in the 2024–2026 Young Talent Support Program by the Beijing Association for Science and Technology. πŸš€

Profile

Education πŸŽ“

Dr. Wang Xi completed his Ph.D. in Materials Science and Engineering from Beijing University of Technology in June 2021 πŸ›οΈ. His doctoral research focused on advanced flame-retardant materials and high-performance magnetic materials. His academic journey has been driven by a passion for developing innovative and sustainable materials with enhanced safety and efficiency. Over the years, he has collaborated with leading researchers and institutions, refining his expertise in polymer science, material durability, and combustion-resistant materials. His academic foundation has paved the way for cutting-edge advancements in both the academic and industrial domains. πŸŽ“πŸ”¬

Experience πŸ‘¨β€πŸ«

With over a decade of research experience, Dr. Wang Xi has made significant contributions to materials science, particularly in flame-retardant polymers and rare earth permanent magnetic materials. Since 2014, he has been engaged in extensive applied research, securing national and institutional funding for groundbreaking projects. As a faculty member, he mentors graduate students and supervises innovative research projects πŸ”¬. His work has been published in high-impact journals, contributing valuable insights into material performance and fire safety. Additionally, he has played a key role in technology transfer, bridging academic research with industrial applications. His expertise continues to influence emerging trends in advanced materials.

Research Interests πŸ”¬

Dr. Wang Xi specializes in environmentally friendly high-performance flame-retardant materials and high-performance rare earth permanent magnetic materials. His research aims to develop advanced materials that enhance fire safety while maintaining mechanical integrity. His recent projects focus on elastic flame-retardant cluster particles and phosphorus-containing synergistic compounds πŸ”₯. He is the principal investigator for multiple funded studies, including the Beijing Natural Science Foundation General Program, which explores high-performance ABS resin modifications. His work combines polymer chemistry, nanotechnology, and material engineering to address real-world challenges in fire-resistant and high-performance materials. πŸš€

Awards & Recognitions πŸ…

Dr. Wang Xi’s contributions to materials science have been widely recognized. In 2023, he was selected for the 2024–2026 Young Talent Support Program by the Beijing Association for Science and Technology 🌟. His research achievements, including 20+ SCI-indexed publications and 400+ citations, have established him as a leading researcher in his field πŸ“–. He has also secured 4 national invention patents (3 authorized) for his innovative work in flame-retardant materials. His academic excellence and impactful research have earned him multiple grants and institutional recognitions, further solidifying his reputation as a distinguished scientist. πŸ…

Publications πŸ“š

  • [1] Fengshuai Zhou, Wei Tang, Wang Xi*, Lijun Qian*, Jingyu Wang, Yong Qiu, Yajun Chen. Improving the fracture toughness, flame retardancy and smokesuppression of ABS by core-shell elastic flame retardant particles with P/Si
    synergistic effect[J]. Polymer Degradation Stability, 2024, 228, 110893.
  • [2] Wang Xi, Hongguo Zhang, Meijun Li, Weiqiang Liu, Ming Yue. The enhancedoxidation resistance of zinc-coated Nd-Fe-B spherical powders using a rotationcoating technique[J]. Journal of Magnetism and Magnetic Materials, 2024, 597, 171995.
  • [3] Junxiao Li, Lijun Qian*, Wang Xi*, Jingyu Wang, Yong Qiu, Yajun Chen, Wei
    Tang. Alloying synergistic flame retardant effect on PA6 by polyimide containingalkyl hypophosphate structure[J]. European Polymer Journal, 2024, 211, 113033.
  • [4] Fengshuai Zhou, Wang Xi*, Lijun Qian*, Jingyu Wang, Yong Qiu, Yajun Chen. Hexaphenoxy cyclotriphosphazeneboron nitride high efficiency charring systemenhancing the flame retardancy and thermal conductivity of polycarbonate[J]. Polymer Degradation and Stability, 2024, 219, 110601.
  • [5] Yang Zhi, Xi Wang*, Qian Lijun*, Qiu Yong, Wang Jingyu, Chen Yajun, TangWei. Adsorption charring flame retardant effect of phosphaphenanthrene derivateintercalated micro-expanded graphite composite system in rigid polyurethanefoams[J]. Polymer Degradation and Stability, 2023, 216: 110493.
  • [6] Li Junxiao, Qian Lijun*, Xi Wang*, Qiu Yong, Tang Wei, Li Shanzhe. Alloyingsynergistic flame retardant effect improving fire resistance and mechanical properties
    of polyamide 6[J]. Journal of Applied Polymer Science, 2022, 139(48): 1-12.
  • [7] Wang Xi, Weiqiang Liu, Ming Yue, Dongtao Zhang, Qingmei Lu, HongguoZhang, Qiong Wu, Yuqing Li. The DDM curing enhancement for the epoxy resinbinder bonded Nd-Fe-B magnets[J]. IEEE TRANSACTIONSONMAGNETICS,2021, 57(2): 2100207.
  • [8] Wang Xi, Weiqiang Liu, Ruijin Hu, Yuxia Yin, Ming Yue. Property enhancement
    of bonded Nd-Fe-B magnets by composite adhesive design [J]. Materials and Design, 2020, 192:108767.
  • [9] Wang Xi, Lijun Qian, Linjie Li. Flame Retardant Behavior of Ternary SynergisticSystems in Rigid Polyurethane Foams[J]. Polymers, 2019,11(2): 207.
  • [10] Wang. Xi, Weiqiang. Liu, Ming Yue, Dongtao Zhang, Qingmei Lu, HongguoZhang, Yuqing Li. Preparation and Characterization of Phenol Formaldehyde BondedNd-Fe-B Magnets With High Strength and Heat Resistance[J]. IEEETRANSACTIONS ON MAGNETICS, 2018, 54(11):1-4.
  • [11] Wang Xi, Lijun Qian, Zhigang Huang, Yanfang Cao, Linjie Li. Continuouslyreleased flame-retardant behaviors of two kinds of phosphate esters with expandablegraphite in rigid polyurethane foams[J]. Polymer Degradation and Stability, 2016, 130, 97-102.
  • [12] Wang Xi, Lijun Qian, Yong Qiu, Yajun Chen. Flame-retardant behavior of
    bi-group molecule derived from phosphaphenanthrene and triazine groups onpolylactic acid[J]. Polymer Advanced Technologies, 2015, 22, 781-788.
  • [13] Wang Xi, Lijun Qian, Yajun Chen, Bo Xu. Addition flame-retardant behaviors of
    expandable graphite and [bis(2-hydroxyethyl)amino]-methyl-phosphonic aciddimethyl ester in rigid polyurethane foams[J]. Polymer Degradation Stability, 2015, 122: 36-43.
  • [14] Weiqiang. Liu, Wang Xi, Ruijin. Hu, Ming Yue, YuXia Yin, Jingang Guo, Dongtao Zhang, Hongguo Zhang. Preparation and characterization of sodiumsilicate/epoxy resin composite bonded Nd-Fe-B magnets with high performance[J]. Journal of Rare Earths, 37(10):