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基于三嗪缺电子单元宽带隙聚合物给体材料的合成及光伏性能

冯继宝 朱晓东 高建宏 刘治田

武汉工程大学学报2024,Vol.46Issue(2):148-154,236,8.
武汉工程大学学报2024,Vol.46Issue(2):148-154,236,8.DOI:10.19843/j.cnki.CN42-1779/TQ.202301004

基于三嗪缺电子单元宽带隙聚合物给体材料的合成及光伏性能

Synthesis and photovoltaic performance of wide-bandgap polymer donor with triazine-based electron-deficient unit

冯继宝 1朱晓东 1高建宏 1刘治田1

作者信息

  • 1. 武汉工程大学材料科学与工程学院,湖北 武汉 430205
  • 折叠

摘要

Abstract

Reducing the costs of photovoltaic material of organic solar cells is an urgent problem to be solved for their industrial production.Here we synthesized a triazine-based electron-deficient building block(BTTz)with a simple structure and low synthetic costs,and then developed a novel wide-bandgap polymer donor poly 2,6-(3,3′-difluoro)bithiophene-alt-2,4-bis(4-(2-butyloctyl)thiophen-2-yl)-6-methoxy-1,3,5-triazine(PDFBTTz)by combining with easily available 3,3'-difluoro-2,2'-bithiophene(DFT).It was characterized by thermogravimetric analysis,ultraviolet-visible absorption spectroscopy and cyclic voltammetry,etc.Results showed that the PDFBTTz exhibits an absorption range of 350-600 nm with a wide bandgap about 2.06 eV and a suitable highest occupied molecular orbit energy level(-5.49 eV),which are complementary with those of small-molecule electron acceptor IT-4F.As a result,the PDFBTTz-based polymer solar cell shows a modest power conversion efficiency of 3.49%with open-circuit voltage of 0.75 V,a short-circuit current density of 10.89 mA·cm-2,and a filling factor of 43.36%.These results indicate that the BTTz is a promising building block to construct wide-bandgap polymers,and further adjustment of molecular structure is expected to generate more efficient polymer donor materials.

关键词

聚合物太阳能电池/光伏性能/聚合物给体材料/三嗪缺电子单元

Key words

polymer solar cell/photovoltaic performance/polymer donor material/triazine-based electron-deficient unit

分类

社会科学

引用本文复制引用

冯继宝,朱晓东,高建宏,刘治田..基于三嗪缺电子单元宽带隙聚合物给体材料的合成及光伏性能[J].武汉工程大学学报,2024,46(2):148-154,236,8.

基金项目

国家自然科学基金(52003209) (52003209)

武汉工程大学学报

1674-2869

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