四川大学LDSports乐动体育(中国)官方网站
师资力量

吴 刚     教授

研究方向:高分子降解与稳定

联系方式:028-85410755          Email:wu_china_chengdu@126.com

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简历:

研究与工作经历

2020.12-至今,四川大学LDSports乐动体育(中国)官方网站,教授

2016.09-2020.12,四川大学LDSports乐动体育(中国)官方网站,副教授

2015.08-2016.09,电子科技大学能源科学与工程学院,副教授

2012.11-2013.11Nanyang Technological UniversityResearch Fellow

2012.07-2015.07,电子科技大学能源科学与工程学院,讲师

教育经历

2006.09-2012.06,四川大学,高分子化学与物理,理学博士,导师:王玉忠教授

2002.09-2006.06,四川大学,应用化学,理学学士,导师:汪秀丽教授

主要研究方向

环境友好高分子材料、高分子材料升级回收与化学循环、火安全能源高分子材料

(欢迎化学、材料等相关专业背景的同学报考研究生,欢迎本科生同学申请“大创”项目、进入实验室开展毕业设计)

主要工作业绩

 围绕高分子材料降解与稳定两大科学问题开展新型环境友好高分子的设计合成与应用、废弃高分子材料的升级利用与化学循环、高分子性能与功能稳定化的新方法研究:发展了生态环境高分子新体系与结构,赋予其新功能,提出结晶诱导与超分子协同自组装调控机制;提出了催化定向热降解热固高分子构建新型多级杂化碳材料新策略,实现高性能吸波吸油升级利用;发展了自修复超疏水微胶囊复合高分子涂层内部结构与表面性能共稳定化方法;提出了电池高分子稳定与功能化新策略,发展热/火安全锂电池。至今已在包括Energy Storage Mater.Adv. Funct. Mater.ACS NanoSci. China Chem.MacromoleculesJ. Mater. Chem. AChem. Eng. J.J. Energy Chem.Green Chem.Carbon等期刊发表SCI论文60余篇;申请发明专利10余项,其中授权6项;参与起草国家标准10项;主持科技部重点研发计划课题、自然科学基金重点类项目等多项国家、省部级项目;受邀在国内外重要学术会议做报告近10次。目前讲授《高分子与现代社会发展》本科生课程。

人才计划、荣誉及获奖情况

国家高层次青年人才计划

四川省高层次人才计划

四川大学“双百”人才

四川省学术与技术带头人后备人选

四川大学本科优秀毕业论文奖指导教师

四川大学课堂教学质量优秀奖

四川大学优秀班主任

学术兼职

ISO/TC61/SC14/WG5工作组专家

Chinese Chemical Letters编委

Journal of Leather Science and Engineering编委

PolymersMoleculesTopic Editor

代表性成果 (获奖成果、专著、论文、专利)

1. Na Yang; Zi-Xuan Luo; Gang Wu*; Yu-Zhong Wang*; Superhydrophobic hierarchical hollow carbon microspheres for microwave-absorbing and self-cleaning two-in-one applications, Chemical Engineering Journal, 2023, 454: 140132.

https://ars.els-cdn.com/content/image/1-s2.0-S1385894722056121-ga1_lrg.jpg

2. Man-Cheng Long; Gang Wu*; Xiu-Li Wang*; Yu-Zhong Wang; Self-adaptable gel polymer electrolytes enable high-performance and all-round safety lithium ion batteries, Energy Storage Materials, 2022, 53: 62-71.

3. Yang-Yang Xie; Qing-Song Liu; Dong-Le Li; Gang Wu*; Si-Chong Chen*; Yu-Zhong Wang; Structural and electronic engineering towards high-efficiency metal-free electrocatalysts for boosting oxygen evolution, Chemical Engineering Journal, 2022, 450: 138063.

4. Mei-Chen Liu; Hui-Jun Chen; Gang Wu*; Xiu-Li Wang; Yu-Zhong Wang; Multifunctional robust aerogel separator towards high-temperature, large-rate, long-cycle lithium-ion batteries, Chinese Chemical Letters, 2022, DOI: 10.1016/j.cclet.2022.05.060

5. Yi-Teng Yan; Gang Wu*; Si-Chong Chen; Yu-Zhong Wang*; Controlled synthesis and closed-loop chemical recycling of biodegradable copolymers with composition-dependent properties, Science China Chemistry, 2022, 65: 943-953. (封面文章)

 

6. Man-Cheng Long; Ping-Hui Duan; You Gao; Xiu-Li Wang*; Gang Wu*; Yu-Zhong Wang; Boosting safety and performance of lithium-ion battery enabled by cooperation of thermotolerant fire-retardant composite membrane and nonflammable electrolyte, Chemical Engineering Journal, 2022, 432: 134394.

7. Yi-Teng Yan; Gang Wu*; Si-Chong Chen; Yu-Zhong Wang*; Synthesis and characterization of poly(p-dioxanone)-based degradable copolymers with enhanced thermal and hydrolytic stabilities, Chinese Chemical Letters, 2022, 33: 2151-2154.

8. Zheng-He Yang; Guo-Qiang Tian; Si-Chong Chen; Gang Wu*; Yu-Zhong Wang; Regulating Properties of Poly(p-dioxanone) Enabled by Introducing n-Alkyl Substituents of δ-Lactone, Acta Polymerica Sinica, 2022, 53: 236-244.

9. Man-Cheng Long; Ting Wang; Ping-Hui Duan; You Gao; Xiu-Li Wang*; Gang Wu*; Yu-Zhong Wang; Thermotolerant and fireproof gel polymer electrolyte toward high-performance and safe lithium-ion battery, Journal of Energy Chemistry, 2022, 65: 9-18.

10. Hui-Jun Chen; Qi-Yao Bai; Mei-Chen Liu; Gang Wu*; Yu-Zhong Wang; Ultrafast, cost-effective and scaled-up recycling of aramid products into aramid nanofibers: mechanism, upcycling, closed-loop recycling, Green Chemistry, 2021, 23: 7646-7658.

Graphical abstract: Ultrafast, cost-effective and scaled-up recycling of aramid products into aramid nanofibers: mechanism, upcycling, closed-loop recycling

11. Yang-Yang Xie; Hui-Jun Chen; Qi-Yao Bai; Xiu-Li Wang; Gang Wu*; Si-Chong Chen*; Yu-Zhong Wang; NiO nanofibers clad nickel foam as binder-free electrode with ultrahigh mass loading: boosting performance of hybrid supercapacitor and overall water-splitting, Electrochimica Acta, 2021, 390: 138772.

12. Na, Yang; Zi-Xuan, Luo; Si-Chong, Chen; Gang, Wu*; Yu-Zhong, Wang*; Superhydrophobic magnetic hollow carbon microspheres with hierarchical micro/nano-structure for ultrafast and highly-efficient multitasking oil-water separation, Carbon, 2021, 174: 70-78.

13. Na, Yang; Zi-Xuan, Luo; Si-Chong, Chen; Gang, Wu*; Yu-Zhong, Wang*; Fe3O4 Nanoparticle/N-Doped Carbon Hierarchically Hollow Microspheres for Broadband and High-Performance Microwave Absorption at an Ultralow Filler Loading, ACS Applied Materials & Interfaces, 2020, 12: 18952-18963.

14. Xiao-Shuan, Chen; You, Gao; Guo-Rui, Zhu; Hui-Jun, Chen; Si-Chong, Chen; Xiu-Li, Wang; Gang, Wu*; Yu-Zhong, Wang; Multifunctional interlayer with simultaneously capturing and catalytically converting polysulfides for boosting safety and performance of lithium-sulfur batteries at high-low temperatures, Journal of Energy Chemistry, 2020, 50: 248-259.

15. Gang, Wu*; Zi-Sheng, Wang; Qi-Yao, Bai; Simultaneous Dual Thermoresponsiveness and Fluorescence of Degradable Amphiphilic Diblock Copolymers in Water: Synergy of Supramolecular Interactions and Crystallization, Macromolecules, 2019, 52: 5907-5916.

16. Teng, Huang; Man-Cheng, Long; Xiu-Li, Wang*; Gang, Wu*; Yu-Zhong, Wang; One-step preparation of poly(ionic liquid)-based flexible electrolytes by in situ polymerization for dendrite -free lithium ion batteries , Chemical Engineering Journal, 2019, 375: 122062.

17. Na, Yang; Zi-Xuan, Luo; Guo-Rui, Zhu; Si-Chong, Chen; Xiu-Li, Wang; Gang, Wu*; Yu-Zhong, Wang*; Ultralight Three-Dimensional Hierarchical Cobalt Nanocrystals/N-Doped CNTs/Carbon Sponge Composites with a Hollow Skeleton toward Superior Microwave Absorption, ACS Applied Materials & Interfaces, 2019, 11: 35987-35998.

18. Teng, Huang; Man Cheng, Long; Gang, Wu*; Yu-Zhong, Wang; Xiu-Li, Wang*; Poly(ionic liquid)-Based Hybrid Hierarchical Free-Standing Electrolytes with Enhanced Ion Transport and Fire Retardancy Towards Long-Cycle-Life and Safe Lithium Batteries, ChemElectroChem, 2019, 6: 3674-3683.

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19. Zhao-Yan, Zhu; Na, Yang; Xiao-Shuan, Chen; Si-Chong, Chen; Xiu-Li, Wang; Gang, Wu*; Yu-Zhong, Wang; Simultaneously Porous Structure and Chemical Anchor: A Multifunctional Composite by One-Step Mechanochemical Strategy toward High-Performance and Safe Lithium–Sulfur Battery, ACS Applied Materials & Interfaces, 2018, 10: 41359-41369.

20. Na Yang; Zi-Sheng Wang; Zhao-Yan Zhu; Si-Chong Chen; Gang Wu*; Polymeric Microcapsules with Sustainable Core and Hierarchical Shell toward Superhydrophobicity and Sunlight-Induced Self-Healing Performance, Industrial & Engineering Chemistry Research, 2018, 57: 14517-14526.

21. Gang, Wu*; Congjin, Hu; Junyi, Cui; Si-Chong, Chen; Yu-Zhong, Wang*; Concurrent Superhydrophobicity and Thermal Energy Storage of Microcapsule with Superior Thermal Stability and Durability, ACS Sustainable Chemistry & Engineering, 2017, 5: 7759-7767.

22. Gang, Wu; Si-Chong, Chen; Chang-Lei, Liu; Yu-Zhong, Wang*; Direct Aqueous Self-Assembly of an Amphiphilic Diblock Copolymer toward Multistimuli-Responsive Fluorescent Anisotropic Micelles, ACS Nano, 2015, 9(4): 4649-4659.

23. Gang, Wu; Jinliang, An; Xiu-Zhi, Tang; Yong, Xiang; Jinglei, Yang*; A Versatile Approach towards Multifunctional Robust Microcapsules with Tunable, Restorable, and Solvent-Proof Superhydrophobicity for Self-Healing and Self-Cleaning Coatings, Advanced Functional Materials, 2014, 24(43): 6751-6761. (封面文章)

24. Gang, Wu; Jinliang, An; Dawei, Sun; Xiuzhi, Tang; Yong, Xiang*; Jinglei, Yang*; Robust microcapsules with polyurea/silica hybrid shell for one-part self-healing anticorrosion coatings, Journal of Materials Chemistry A, 2014, 2(30): 11614-11620.

Graphical abstract: Robust microcapsules with polyurea/silica hybrid shell for one-part self-healing anticorrosion coatings

25. Gang, Wu; Si-Chong, Chen*; Xiu-Li, Wang; Ke-Ke, Yang; Yu-Zhong, Wang*; Dynamic Origin and Thermally Induced Evolution of New Self-Assembled Aggregates from an Amphiphilic Comb-Like Graft Copolymer: A Multiscale and Multimorphological Procedure, Chemistry-A European Journal, 2012, 18(39): 12237-12241.

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26. Gang, Wu; Si-Chong, Chen; Qi, Zhan; Yu-Zhong, Wang*; Well-Defined Amphiphilic Biodegradable Comb-Like Graft Copolymers: Their Unique Architecture-Determined LCST and UCST Thermoresponsivity, Macromolecules, 2011, 44(4): 999-1008. (封面文章)

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