功能高分子学报2024,Vol.37Issue(2) :121-129.DOI:10.14133/j.cnki.1008-9357.20231229001

噻唑乙烯类聚合物的设计合成及其聚集态结构表征

Design,Synthesis and Aggregation Structure Characterization of Thiazole-Vinyl Polymer

刘佳 巨世杰 程智敏 夏思梦 秦红梅 李宇翔
功能高分子学报2024,Vol.37Issue(2) :121-129.DOI:10.14133/j.cnki.1008-9357.20231229001

噻唑乙烯类聚合物的设计合成及其聚集态结构表征

Design,Synthesis and Aggregation Structure Characterization of Thiazole-Vinyl Polymer

刘佳 1巨世杰 1程智敏 1夏思梦 1秦红梅 1李宇翔1
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作者信息

  • 1. 西安科技大学材料科学与工程学院, 西安 710054
  • 折叠

摘要

聚噻吩(PTs)是有机太阳能电池(OSCs)中很有前途的电子给体材料,但其较高的分子能级和不利的活性层形貌限制了其光伏器件性能的提升.在聚噻吩乙烯(PTVT-T)结构的基础上引入噻唑单元,设计合成了一种新型聚噻唑乙烯类材料(PTzV-T).通过紫外-可见吸收光谱、电化学循环伏安法以及二维掠入射广角X射线散射等对PTzV-T的能级结构和聚集态结构进行了表征.结果表明:PTzV-T不仅具有较低的最高占据分子轨道(HOMO)能级(-5.88 eV),而且呈现出高度的分子平面性;在溶剂氯仿、氯苯和邻二甲苯中均表现出不同的预聚集行为和温度依赖性,采用这3种溶剂制备的薄膜也呈现出不同的晶体堆积方式和结晶强度.

Abstract

Polythiophene(PTs)is a promising electron donor in organic solar cells(OSCs)due to its simple structure and excellent synthetic scalability.However,the high HOMO(highest occupied molecular orbital)energy level of PTs and the unfavorable active layer morphology limit the performance improvement of PTs-based OSC device.Herein,in order to solve the disadvantage of high HOMO energy level of PTs,a highly planar polymer donor poly(thiazole-ethylene)derivatives(PTzV-T)was designed and synthesized by introducing an ester-functional thiazole-vinyl structure as electron-withdrawing unit into the reported poly(thiophene vinylene)derivative(PTVT-T).The aggregation behavior and energy structure were characterized by ultraviolet-visible(UV-Vis)absorption spectroscopy,electrochemical cyclic voltammetry and two-dimensional grazing incidence wide-angle X-ray scattering.Results show that the polymer PTzV-T has a low HOMO energy level(-5.88 eV)and solid planarity,and shows different preaggregation behaviors and temperature dependence in chloroform,chlorobenzene and o-xylene solvents.The films prepared with these three solvents also show different crystal packing modes and crystallinity.

关键词

聚噻吩/噻唑乙烯/电子给体/聚集态结构/有机太阳能电池

Key words

polythiophene/thiazole-vinyl/electron donor/aggregation structure/organic solar cell

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基金项目

国家自然科学基金青年基金(52203421)

国家自然科学基金青年基金(21905225)

陕西省自然科学基础研究计划(2022JM-229)

出版年

2024
功能高分子学报
华东理工大学

功能高分子学报

CSTPCD北大核心
影响因子:0.336
ISSN:1008-9357
参考文献量33
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