欢迎光临武汉理工大学安全科学与应急管理学院!
职称:讲师/硕士生导师
邮箱:fei.xiao@whut.edu.cn
微信/QQ:Fire_Feu; 1937299972
研究方向: 先进火安全功能材料的构筑及其工程化应用;安全功能材料;新能源安全。
个人简介
肖飞,1993年3月生,讲师,硕士研究生导师,九三学社社员;入选2024年湖北省青年科技人才晨光托举工程、武汉英才-优秀青年人才。2018年获中国科学院大学(UCAS)理学硕士学位;2021年获法国顶尖精英工程师学校--里尔中央理工学院(Centrale Lille)/法国国家科研中心-材料与转化实验室(CNRS-UMET,国家级实验室)博士学位(导师:Serge BOURBIGOT教授(PDST副主编,JFS副主编)和Gaëlle FONTAINE教授(PAT副主编));2025年日本东京大学访问学者(The University of Tokyo,合作导师:Takafumi NOGUCHI,获“2024年青年骨干教师出国研修项目”全额资助)。
主要从事先进火安全工程材料的构筑及其工程化应用等研究;主持“十四五”国家重点研发计划项目子课题(2项)、湖北省自然科学基金青年基金等各类科研项目多项;在Constr. Build. Mater., ACS Appl. Polym. Mater., Compos. Part A, Polym. Degrad. Stab., Comp. Comm.等火安全工程材料领域国际高水平学术期刊发表SCI论文30余篇(其中,以第一/通讯作者发表JCR Q2以上SCI论文18篇,ESI高被引论文1篇),在国际学术会议作口头汇报或墙报展示6次。
主要荣誉及学术任职:
[1] 入选2024年湖北省青年科技人才晨光托举工程
[2] 入选2024年武汉英才计划-优秀青年人才
[3] 入选2024年武汉理工大学保密工作先进个人
[4] 担任SCI期刊Polymers专题顾问(青年编委)和客座编辑,J. Compos. Sci.专题顾问(青年编委),Frontier in Chemistry期刊客座编辑;担任eScience青年编委(ESCI,IF=42.9),Adv. Powder Mater.青年编委(ESCI, EI, IF=28.6);Composite Materials (CM) 期刊编委。
[5] 担任Chem. Eng. J., Polym. Degrad. Stab., Prog. Org. Coat., Polymer, J. Mater. Sci., Polym. Adv. Technol., Case Stud. Therm. Eng., J. Fire Sci., Fire Technol., Powder Technol.等20余本SCI期刊及国际会议论文审稿人。
[6] 全国本科毕业论文(设计)抽检评审专家库专家,武汉市公安局XX分局火灾事故调查外聘专家,国际燃烧学会会员,中国化学会会员,中国化工学会会员,中国设备协会绿安中心专家等。
主讲课程
[1] 本科生课程:工程热力学与传热学,防火防爆工程;
[2] 研究生课程:系统安全分析与评价,安全工程研究方法与实验技术。
招生信息
[1] 研究生招生专业:安全(科学)工程、消防工程、材料、化学等相关专业。
主持科研项目 (2020年以来)
[1] 国家重点研发计划子课题,2025.01-2027.12,50万,主持;
[2] 国家重点研发计划子课题,2024.06-2026.06,21万,主持;
[3] 湖北省自然科学基金青年基金,2024.05-2026.05,5万,主持;
[4] 安徽理工大学开放课题基金,2023.05-2025.04,5万,主持;
[5] 北京工商大学开放课题基金,2022.06-2023.06,2万,主持;
[6] 武汉理工大学自主创新基金,2022.06-2023.06,5万,主持;
[7] 企业技术开发课题,2022.10-2024.09,25万,主持。
出版专著、教材和SCI特刊情况(2020年以来)
[1] Special Issue & Printed Edition: Fei Xiao, Fubin Luo, Ke Sun. Advance in Polymer Composites: Fire Protection and Thermal Management, Polymers, MDPI Publisher, 2023. ISBN: 978-3-7258-1914-0.
[2] Special Issue: Fei Xiao, Siqi Huo, Zongmin Zhu, Xiaodong Jin. Innovative Flame Retardant Materials: Balancing Efficiency, Safety, and Sustainability, Frontiers in Chemistry, 2024.
[3] Special Issue: Fei Xiao, Shuang Yang, Jinhan Lu. Advances in Fire-Safe Polymer Materials, Polymers, 2024.
[4] Special Issue: Fei Xiao, Fubin Luo. Advance in Polymer Composites: Fire Protection and Thermal Management, 2nd Edition, Polymers, 2024.
发表论文情况 (2015年以来)
1. Xiao F., Shao W., Gao X., Shi Y., Liu Y., Yuan B., Li K.*. A versatile ionic liquid enables epoxy resin with excellent fire safety and mechanical properties but ultra-low loading. Eur. Polym. J., 2024, 219, 113420.
2. Xiao F., Fontaine G., Li K., Bourbigot S.* Solid-state NMR characterization of multi-component intumescent flame retardant polybutylene succinate composites. Polym. Adv. Technol., 2023, 34 (3), 973-984.
3. Xiao F., Fontaine G., Bourbigot S.* Improvement of flame retardancy and anti-dripping properties of intumescent polybutylene succinate combining piperazine pyrophosphate and zinc borate. ACS Appl. Polym. Mater., 2022, 4(3), 1911-1921.
4. Xiao F., Fontaine G., Li K., Bourbigot S.* Combination effect of zinc borate in intumescent polybutylene succinate systems Study of the carbonaceous structures using solid-state NMR. Polym. Degrad. Stabil., 2022, 206, 110192.
5. Xiao F., Fontaine G., Bourbigot S.* A highly efficient intumescent polybutylene succinate: Flame retardancy and mechanistic aspects, Polym. Degrad. Stabil., 2022, 196, 109830.
6. Xiao F., Fontaine G., Bourbigot S.* Intumescent polybutylene succinate: Ethylenediamine phosphate and synergists, Polym. Degrad. Stabil., 2021, 192, 109707.
7. Xiao F., Fontaine G., Bourbigot S.* Recent developments in fire retardancy of polybutylene succinate, Polym. Degrad. Stabil., 2021, 183, 109466.
8. Xiao F., Wu K.*, Luo F., Yao S., Lv M., Zou H., Lu M. Influence of ionic liquid-based metal-organic hybrid on thermal degradation, flame retardancy, and smoke suppression properties of epoxy resin composites. J. Mater. Sci., 2018, 53(14), 10135-10146.
9. Xiao F., Wu K.*, Luo F. Guo Y., Zhang S., Du X., Zhu Q., Lu M. An efficient phosphonate-based ionic liquid on flame retardancy and mechanical property of epoxy resin. J. Mater. Sci., 2017, 52(24), 13992-14003.
10. Yang S., Zhang S., Luo F.*, Li H., Xiao F.*, Curing and thermal degradation behavior of epoxy-based vitrimers. J. Polym. Sci., 2024, 141(10), 55057.
11. Zhang J., Guo Y., Shao W., Xiao F.*, Benign design of intumescent fire protection coatings for steel structures containing biomass humic acid as carbon source. Constr. Build. Mater., 2023, 409, 134001.
12. Yuan B., Qi C., Tao H., Zhang R., Zhou J., Zhao H., Chen Y.*, Fang Q., Xiao F.*, Reduced graphene oxide-Ti3C2TX composite papers with the ingenious combination of fire-resistant skeleton structure and porous conductive framework for effective electromagnetic interference shielding. Compos. Part A, 2023, 166, 107409.
13. Wang Y., Ma L., Yuan J., Zhu Z. *, Liu X., Li D., He L., Xiao F.*, Furfural-based P/N/S flame retardant towards high-performance epoxy resins with flame retardancy, toughness, low dielectric properties and UV resistance. Polym. Degrad. Stabil., 2023, 212, 110343. (Highly Cited Paper)
14. Shao W., Li T., Xiao F.*, Luo F.*, Qiu, Y., Liu, Y., Yuan, B., Li, K., Exploration of the fire-retardant potential of microencapsulated ammonium polyphosphate in epoxy vitrimer containing dynamic disulfide bonds. Polymers, 2023, 15(13), 2839.
15. Yang S., Luo F.*, Xiao F.*, Cui W., Li H., Qian Q., Chen Q., Thermal conductivity and orientation of liquid crystal polymer filled with boron nitride. Compos. Commun., 2023, 43, 101727.
16. Wu Y., Wu K. *, Xiao F.*, Jiao, E., Shi, J., Lu, M., High thermal conductivity and excellent mechanical properties of liquid crystal co-polyester based on hydron bond. J. Appl. Polym. Sci., 2023, 140(25), 53951.
17. Yang Y., Tan H., Zhang J., Shang F., Xiao F.*, Li K.* Surface activity and foam properties of novel Gemini short-chain fluorocarbon and hydrocarbon mixed system in aqueous solutions. Therm. Sci. Eng. Prog. 2023, 38, 101628.
18. Zhang J.*, Shang F., Zhou W., Xiao F.*, Cheng D. Fire-extinguishing performance and gas-phase pollution characteristics of different foam agents in extinguishing transformer oil pool fire. J. Fire Sci., 2022, 40(6), 463-478.