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1.吉林大学化学学院 特种工程塑料教育部重点实验室 高性能聚合物合成技术国家地方联合工程实验室, 长春 130012
2.东华大学先进低维材料中心, 上海 201620
丛冰(1996-),女,博士,主要从事聚合物电致变色的研究
* 周宏伟 (1970-),女,博士,教授,主要从事有机芳杂环材料、特种工程塑料、高性能有机复合材料的研究。E-mail: zhw@jlu.edu.cn
纸质出版日期:2023-08-20,
收稿日期:2022-11-29,
修回日期:2023-01-25,
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丛冰, 王大明, 赵晓刚, 周宏伟, 陈春海. 含三苯胺结构聚酰(亚)胺电致变色/电控荧光双功能材料的研究进展[J]. 高分子通报, 2023,36(8):914-928.
CONG Bing, WANG Da-ming, ZHAO Xiao-gang, ZHOU Hong-wei, CHEN Chun-hai. Research Progress of Electrochromic/Electrofluorochromic Materials Based on Polyamide/Polyimide[J]. Polymer Bulletin, 2023,36(8):914-928.
丛冰, 王大明, 赵晓刚, 周宏伟, 陈春海. 含三苯胺结构聚酰(亚)胺电致变色/电控荧光双功能材料的研究进展[J]. 高分子通报, 2023,36(8):914-928. DOI: 10.14028/j.cnki.1003-3726.2023.08.002.
CONG Bing, WANG Da-ming, ZHAO Xiao-gang, ZHOU Hong-wei, CHEN Chun-hai. Research Progress of Electrochromic/Electrofluorochromic Materials Based on Polyamide/Polyimide[J]. Polymer Bulletin, 2023,36(8):914-928. DOI: 10.14028/j.cnki.1003-3726.2023.08.002.
电致变色/电控荧光双功能聚酰(亚)胺作为新兴发展的光学显示材料具有广阔的应用前景
但由于传统的聚酰(亚)胺溶解性较差以及荧光的高度环境敏感性
限制了此类材料的进一步应用。本文结合本课题组的研究工作和国内外其他研究团队具有代表性的工作
分析总结了近几年用于电致变色/电控荧光的含三苯胺结构二胺单体以及对应的聚酰(亚)胺
分析了聚合物分子结构与电致变色/电控荧光性能之间的关系
重点讨论了三苯胺结构在聚合物结构设计中的重要作用。着重讨论了电活性氮原子的数目、电活性氮原子在聚合物链中的位置、荧光团的数目和位置对电致变色/电控荧光双功能材料性能的影响
希望能为制备高性能的电致变色/电控荧光双功能材料提供借鉴。
As a newly developed optical display material
electrochromic/electrofluorochromic dual functional polyamide/polyimide materials have wide prospects. However
the poor solubility of traditional polyamide/polyimide and the high environmental sensitivity of fluorescence limit the development of such materials. In this paper
we analyzed and summarized the diamine monomer containing triphenylamine structure used in electrochromic/electrofluorochromic in recent years and the corresponding polyimide based on the work of our group and other representative work. Moreover
we further analyzed the relationship between the structure and electrochromic/electrofluorochromic performance
especially focusing on the important role of triphenylamine structure in design. According to the different numbers of electroactive nitrogen atoms in the diamine monomer or structural unit
we classified into monovalent system and mixed valence system. The effects of the number of electroactive nitrogen atoms
the position of electroactive nitrogen atoms in the polymer
the number and position of fluorescent groups on the properties of electrochromic/electroluminescent dual functional materials are emphatically discussed. It is expected to provide a new idea for the preparation of high-performance electrochromic/electroluminescent dual functional materials.
三苯胺电活性氮原子中心电致变色/电控荧光聚酰(亚)胺
TriphenylamineElectroactive nitrogen atom centerElectrochromic/ElectroluminescentPolyamide/Polyimide
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