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姜猛进

  • 职称:教授
  • 所属学科:高分子材料
  • 导师情况:博导
  • E-mail:memoggy@scu.edu.cn
  • 个人主页:

教育经历:

19969月至20006月,就读于苏州大学材料学院,高分子材料与工程专业工学学士学位。

20029月至20056月,就读于公司化学学院,高分子物理与化学专业理学硕士学位。

20059月至20086月,就读于澳门新浦新京8455com(中国)有限公司,高分子材料与科学专业工学博士学位。

工作经历:

20007月至20028月,于诺瓦化学(苏州)有限公司任职研发专员,从事功能纺织助剂产品设计研发。

20087月至今,于澳门新浦新京8455com(中国)有限公司任教,从事高分子材料学科的教学及科研工作。

20148月至20168月于美国北卡州立大学纺织学院(College of TextileNorth Carolina State UniversityXiangwu Zhang教授课题组进行访学研究,主要从事聚合物新能源材料与器件的开发与研究工作。

 

简介

课题组致力于特种高性能纤维领域的材料学基础研究与产业化应用开发研究。研究团队在聚乙烯醇纤维的差别化和高性能化研究领域取得了突出的成绩,参与开发的高强阻维纶系列产品广泛的应用于我国警用作训服及工装面料。研究团队在高性能纤维产业化领域有着丰富的工作经验,与企业合作成功的实现了耐热聚芳噁二唑纤维和干湿法间位芳纶长丝生产装置的建成投产。主持承担有教育部博士点基金、国家自然科学基金、国家重点研发计划、四川省先进材料重大科技专项、四川省重点研发项目及多项企业合作项目。已发表科研论文80余篇,其中SCI收录40余篇;申请专利24项,其中已授权18项。主持编写专著《高性能纤维技术丛书—高强高模聚乙烯醇纤维》,参与编写“十一五”国家级规划教材《高分子材料设计与应用》。

课题组于2016年起设立了聚合物新能源材料与器件研究方向,并与美国North Carolina State University张向武教授课题组开展合作,拓展传统高分子材料在能源材料领域内的应用。通过研究,团队在水凝胶聚合物电解质、聚合物单离子导体、导电聚合物负极粘结剂、高比能水系超级电容构建等领域取得了众多突破,在Progress in Energy and Combustion ScienceACS Applied Energy MaterialsJournal of Materials Chemistry AACS applied materials & interfaces等杂志发表了多篇高水平研究论文。

课题组目前主要研究方向:①高性能纤维成型工艺及设备研究与开发;②聚合物新能源材料与器件。各位有志于我国高性能纤维材料发展突破的同学,以及对聚合物新能源材料与器件有强烈兴趣与爱好的同学,欢迎报考并加入我们的研究团队!

课题组招聘信息:

课题组因发展需要,招聘有新能源材料与器件方向和电化学方向研究背景的专职博士后,以及具有高分子溶液加工(溶液纺丝,溶液流延成膜)研究和工作背景的专职博士后。有意者可将简历发至邮箱:memoggy@scu.edu.cn,此信息长期有效。

E-mailmemoggy@scu.edu.cn;memoggy@126.com

附录:

部分研究论文:

1.    Yu, Y.; Zhu, J.; Zeng, K.; Jiang, M., Mechanically robust and superior conductive n-type polymer binders for high-performance micro-silicon anodes in lithium-ion batteries. Journal of Materials Chemistry A 2021, 9 (6), 3472-3481.

2.    Yu, Y.; Gao, H.; Zhu, J.; Li, D.; Wang, F.; Jiang, C.; Zhong, T.; Liang, S.; Jiang, M., Ionic/electronic conductivity regulation of n-type polyoxadiazole lithium sulfonate conductive polymer binders for high-performance silicon microparticle anodes. Chinese Chemical Letters 2021, 32 (1), 203-209.

3.    Wang, F.; Song, Y.; Liang, S.; Yu, Y.; Liang, J.; Jiang, M., Polyamidoxime nanoparticles/polyvinyl alcohol composite chelating nanofibers prepared by centrifugal spinning for uranium extraction. Reactive and Functional Polymers 2021, 159, 104812.

4.    Li, D.; Wang, H.; Luo, L.; Zhu, J.; Li, J.; Liu, P.; Yu, Y.; Jiang, M., Electrospun Separator Based on Sulfonated Polyoxadiazole with Outstanding Thermal Stability and Electrochemical Properties for Lithium-Ion Batteries. ACS Applied Energy Materials 2021, 4 (1), 879-887.

5.    Li, D.; Luo, L.; Zhu, J.; Qin, H.; Liu, P.; Sun, Z.; Lei, Y.; Jiang, M., A hybrid lithium sulfonated polyoxadiazole derived single-ion conducting gel polymer electrolyte enabled effective suppression of dendritic lithium growth. Chinese Chemical Letters 2021.

6.    Zhu, J.; Yan, C.; Zhang, X.; Yang, C.; Jiang, M.; Zhang, X., A sustainable platform of lignin: From bioresources to materials and their applications in rechargeable batteries and supercapacitors. Progress in Energy and Combustion Science 2020, 76, 100788.

7.    Yu, Y.; Zhu, J.; Gao, H.; Yang, C.; Chen, S.; Zhang, S.; Jiang, M., Preparation and characterization of a class of selfdoping aromatic polyoxadiazole electrochromic materials. Journal of Applied Polymer Science 2020, 137 (45), 49406.

8.    Yang, C.; Li, D.; Gao, H.; Liu, Q.; Zhu, J.; Wang, F.; Jiang, M., Constructing High-Energy-Density Aqueous Supercapacitors with Potassium Iodide-Doped Electrolytes by a Precharging Method. ACS Applied Energy Materials 2020, 3 (3), 2674-2681.

9.    Liu, Q.; Cao, K.; Qi, S.; Yang, Y.; Liang, S.; Gao, H.; Yang, C.; Li, D.; Jiang, M., The effects of surfactants on the spinnability, structure and properties of dry-jet wet spinning poly (m-phenylene isophalamide) fiber. Fibers and Polymers 2020, 21 (7), 1438-1443.

10.  Liang, S.; Wang, F.; Liang, J.; Chen, S.; Jiang, M., Synergistic effect between flame retardant viscose and nitrogen-containing intrinsic flame-retardant fibers. Cellulose 2020, 27 (10), 6083-6092.

11.  Li, W.; Qi, S.; Liu, Q.; Gao, H.; Liang, S.; Feng, W.; Jiang, M., Thermal degradation and flame retardant mechanism of sulfonated polyoxadiazole fibers modified by metal ions. Journal of Polymer Research 2020, 27 (12), 1-9.

12.  Gao, H.; Mao, J.; Li, D.; Yu, Y.; Yang, C.; Qi, S.; Liu, Q.; Zhu, J.; Jiang, M., Lithium Sulfonated Polyoxadiazole as a Novel Single-Ion Polymer Electrolyte in Lithium-Ion Batteries. Journal of The Electrochemical Society 2020, 167 (7).

13.  Xue, R.; Mao, J.; Zhao, H.; Yang, C.; Gao, H.; Xu, J.; Jiang, M., Effect of nano silicon dioxide on the structure and properties of FeCl3doped polyvinyl alcohol photopolymer film. Journal of Applied Polymer Science 2019, 136 (26), 47702.

14.  Lv, W.; Xue, R.; Chen, S.; Jiang, M., Temperature stability of symmetric activated carbon supercapacitors assembled with in situ electrodeposited poly (vinyl alcohol) potassium borate hydrogel electrolyte. Chinese Chemical Letters 2018, 29 (4), 637-640.

15.  Song, Y.; Zhang, X.; Ye, G.; Xu, J.; Jiang, M., Waterresistant modification of poly (vinyl alcohol)/polyamidoxime chelating fibers prepared by emulsion spinning and their adsorption properties. Journal of Applied Polymer Science 2017, 134 (25).

16.  Xu, W.; Yu, C.; Zhao, X.; Xu, J.; Jiang, M., Melamine formaldehyde/polyvinyl alcohol composite fiber: structures and properties controlled by reactioninduced phase separation. Journal of Applied Polymer Science 2016, 133 (4).

17.  Jiang, M.; Zhu, J.; Chen, C.; Lu, Y.; Pampal, E. S.; Luo, L.; Zhu, P.; Zhang, X., Superior high-voltage aqueous carbon/carbon supercapacitors operating with in situ electrodeposited polyvinyl alcohol borate gel polymer electrolytes. Journal of Materials Chemistry A 2016, 4 (42), 16588-16596.

18.  Jiang, M.; Zhu, J.; Chen, C.; Lu, Y.; Ge, Y.; Zhang, X., Poly (vinyl alcohol) borate gel polymer electrolytes prepared by electrodeposition and their application in electrochemical supercapacitors. ACS applied materials & interfaces 2016, 8 (5), 3473-3481.

19.  Song, Y.; Li, J.; Ye, G.; Xu, J.; Jiang, M., Polyamidoxime/poly (vinyl alcohol) composite chelating fiber prepared by emulsion spinning and its adsorption properties for metal ions. Industrial & Engineering Chemistry Research 2015, 54 (49), 12367-12373.

20.  Li, Z.; He, W.; Xu, J.; Jiang, M., Preparation and characterization of in situ grafted/crosslinked polyethylene glycol/polyvinyl alcohol composite thermal regulating fiber. Solar Energy Materials and Solar Cells 2015, 140, 193-201.

21.  Yu, C.; Xu, W.; Zhao, X.; Xu, J.; Jiang, M., Effects of the reaction degree of melamine-formaldehyde resin on the structures and properties of melamine-formaldehyde/polyvinyl alcohol composite fiber. Fibers and Polymers 2014, 15 (9), 1828-1834.

22.  Xu, W.; Dong, S.; Yu, C.; Yan, X.; Xu, J.; Jiang, M., Melamine formaldehyde/polyvinyl alcohol composite fiber: structure and properties manipulated by hydroxymethylation degree. Journal of Applied Polymer Science 2014, 131 (17).

23.  Chen, W.; Fu, X.; Ge, W.; Xu, J.; Jiang, M., Microencapsulation of bisneopentyl glycol dithiopyrophosphate and its flame retardant effect on polyvinyl alcohol. Polymer degradation and stability 2014, 102, 81-87.

24.  Li, J.; Wang, B.; Ye, G.; Xu, J.; Jiang, M., Study of synthesizing energy storage microcapsules in PVA spinning solution and thermal regulating fibers prepared by this solution. Fibers and Polymers 2013, 14 (4), 537-541.

 

部分授权专利:

1. 姜猛进,曹凯凯,刘倩丽等,一种间位芳香族聚酰胺纺丝原液的改性方法,中国发明专利,专利号:ZL202010191376.0

2. 姜猛进,高慧慧,徐建军等,电极粘接剂及其制备方法和锂离子电池负极及锂离子电池,中国发明专利,专利号:ZL201910820964.3

3. 姜猛进,齐世凯,施楣梧等,一种阻燃芳香族聚噁二唑聚合物及其制备方法,中国发明专利,专利号:ZL201910570484.6

4. 姜猛进,徐建军,毛建昭等,一种锂离子聚合物电解质膜及其制备方法与应用,中国发明专利,专利号:ZL201811033817.3

5. 姜猛进,张向武,宋永娇等,一种耐高压水系电容器及其制作方法,中国发明专利,专利号:ZL201610826654.9

6. 姜猛进,张向武,宋永娇等,直接在电极表面制备聚乙烯醇硼酸盐络合水凝胶电解质的方法,中国发明专利,专利号:ZL201510548954.0

7. 姜猛进,傅思迪,曾栌贤等,导电/导磁化学纤维的磁场诱导辅助纺丝成型装置及其生产方法,中国发明专利,专利号:ZL201510416128.0

8. 姜猛进,许维星,王晓东等,氧化银抗菌粘胶纤维及其原位反应的制备方法,中国发明专利,专利号:ZL201410182587.2

9. 姜猛进,李俊繁,宋永娇等,一种偕胺肟化聚丙烯腈胶乳/聚乙烯醇复合螯合纤维的制备方法,中国发明专利,专利号:ZL201310497026.7

10. 姜猛进,李佳佳,王建铨等,一种原位交联聚乙二醇/聚乙烯醇相变储能纤维的制备方法,中国发明专利,专利号:ZL201210569858.0

11. 姜猛进,黎莉,王华全等,一种聚乙烯醇缩甲醛纤维的制备方法,中国发明专利,专利号:ZL201210416178.5

12. 姜猛进,韦啸,叶光斗等,用多元羧酸作为交联剂制备蛋白质/聚乙烯醇复合纤维的方法,中国发明专利,专利号:ZL201210042482.8

13. 姜猛进,傅峰,徐建军等,一种无卤阻燃聚丙烯纤维的制备方法,中国发明专利,专利号:ZL201110120927.5

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