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姚洪岩
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( 副教授 )
赞
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的个人主页 https://teachers.jlu.edu.cn/YHY22/zh_CN/index.htm
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副教授
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性别 :
男
毕业院校 :
Jilin University
学历 :
博士研究生毕业
学位 :
博士
在职信息 :
在职
所在单位 :
化学学院
学科 :
高分子化学与物理
办公地点 :
长春市前进大街2699号吉林大学前卫南区麦氏楼
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[46] Tuning electrical memory properties by varying terminal moieties of functional hyperbranched polyimides. Dyes Pigments, 2018, 151, 179-186.
[47] Recent Development of Thermoelectric Polymers and Composites. 2018, 39, 1700727.
[48] Nonvolatile resistive memory devices based on ferrocene‐terminated hyperbranched polyimide derived from different dianhydrides. J. Polym. Sci., Part A: Polym. Chem. 2018, 56, 505–513
[49] Solution processed intrinsically conductive polymer films with high thermoelectric properties and good air stability. J. Mater. Chem. A, 2018, 6, 24496-24502.
[50] Design and synthesis of ferrocene-terminated hyperbranched polyimide for memory devices. Dyes Pigments, 2017, 146, 210-218.
[51] New poly(amide-imide)s with trifluoromethyl and chloride substituents: Synthesis, thermal, dielectric, and optical properties. Eur. Polym. J., 2017, 94, 392-404.
[52] Synthesis and memory characteristics of highly organo‐soluble hyperbranched polyimides with various electron acceptors. J. Polym. Sci., Part A: Polym. Chem. 2017, 55, 2281–2288.
[53] Solution-Processed Highly Superparamagnetic and Conductive PEDOT:PSS/Fe3O4 Nanocomposite Films with High Transparency and High Mechanical Flexibility. ACS Appl. Mater. Interfaces201792219001-19010.
[54] From a flexible hyperbranched polyimide to a microporous polyimide network: Microporous architecture and carbon dioxide adsorption. Polymer, 2017, 115, 176-183.
[55] Changing the memory behaviors from volatile to nonvolatile via end-capping of hyperbranched polyimides with polycyclic arenes. Dyes Pigments, 2017, 139, 730-736.
[56] Higher PEDOT Molecular Weight Giving Rise to Higher Thermoelectric Property of PEDOT:PSS: A Comparative Study of Clevios P and Clevios PH1000. ACS Appl. Mater. Interfaces201791311732-11738.
[57] Microporous polyimide networks constructed through a two-step polymerization approach, and their carbon dioxide adsorption performance. Polym. Chem., 2017, 8, 1298-1305.
[58] Polymer electrolyte membranes based on cross-linked highly sulfonated co-polyimides. Polymer 2016, 103, 171-179.
[59] Design and synthesis of hyperbranched polyimide containing multi-triphenylamine moieties for memory devices. RSC Adv., 2016, 6, 93094-93102.
[60] Highly sulfonated co-polyimides containing hydrophobic cross-linked networks as proton exchange membranes. Polym. Chem., 2016, 7, 4728-4735.
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