有机光伏用n-环苝二亚胺非富勒烯受体

Colorants Pub Date : 2023-03-21 DOI:10.3390/colorants2010011
Mahmoud E. Farahat, G. Welch
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引用次数: 1

摘要

这项工作涵盖了非富勒烯受体的发展,用于使用n环苝二亚胺染料构建的有机光伏发电。经典的苝二亚胺染料已被广泛用于构建非富勒烯受体,导致器件功率转换效率超过10%。强可见光吸收和深前沿分子能级使得这种材料(分子和聚合物)在体异质结活性层中与窄间隙共轭聚合物配对接近理想。染料的n环化为侧链工程提供了一个额外的位置,并改变了多环芳烃核的电子结构。此外,n -环化允许对苝核心进行选择性溴化,从而产生可用于使用原子经济型直接杂芳基交叉偶联方法构建大分子框架的构建块。在这里,我们详细介绍了由我们的团队开发的一系列分子,这些分子基于具有不同核(富电子和缺电子)的二聚体形式的n环苝二酰亚胺;具有不同侧链的二聚体;具有不同几何形状的四聚体;还有内能级联的大型不对称分子。介绍了这些分子作为非富勒烯受体在有机光伏器件(二元和三元共混物,室外和室内光应用,以及自旋涂层与槽模涂层光活性层)中的应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
N-Annulated Perylene Diimide Non-Fullerene Acceptors for Organic Photovoltaics
This work covers the development of non-fullerene acceptors for use in organic photovoltaics built using the N-annulated perylene diimide dye. The classic perylene diimide dye has been extensively used to construct non-fullerene acceptors, leading to device power conversion efficiencies of over 10%. Strong visible light absorption and deep frontier molecular energy levels have made such materials (both molecular and polymeric) near ideal for pairing with narrow-gap conjugated polymers in bulk-heterojunction active layers. The N-annulation of the dye provides an extra site for side-chain engineering and alters the electronic structure of the polycyclic aromatic core. In addition, N-annulation allows for selective bromination of the perylene core, leading to building blocks that are useful for the construction of large molecular frameworks using the atom-economical direct heteroarylation cross-coupling method. Herein, we detail a series of molecules developed by our team that are based on the N-annulated perylene diimide in the form of dimers with different cores (both electron-rich and electron-deficient); dimers with varied side chains; tetramers with varying geometries; and large, asymmetric molecules with internal energy cascades. The use of these molecules as non-fullerene acceptors in organic photovoltaic devices (binary and ternary blends, outdoor and indoor light applications, and spin-coated vs. slot-die-coated photoactive layers) is presented.
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