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稠环非富勒烯受体设计的最新进展——分子结构与光学、电子和光伏性质之间的关系

Recent Progress in the Design of Fused-Ring Non-Fullerene Acceptors-Relations between Molecular Structure and Optical, Electronic, and Photovoltaic Properties.

作者信息

Schweda Bettina, Reinfelds Matiss, Hofstadler Petra, Trimmel Gregor, Rath Thomas

机构信息

Institute for Chemistry and Technology of Materials, NAWI Graz, Graz University of Technology, Stremayrgasse 9, 8010Graz, Austria.

出版信息

ACS Appl Energy Mater. 2021 Nov 22;4(11):11899-11981. doi: 10.1021/acsaem.1c01737. Epub 2021 Oct 26.

Abstract

Organic solar cells are on the dawn of the next era. The change of focus toward non-fullerene acceptors has introduced an enormous amount of organic n-type materials and has drastically increased the power conversion efficiencies of organic photovoltaics, now exceeding 18%, a value that was believed to be unreachable some years ago. In this Review, we summarize the recent progress in the design of ladder-type fused-ring non-fullerene acceptors in the years 2018-2020. We thereby concentrate on single layer heterojunction solar cells and omit tandem architectures as well as ternary solar cells. By analyzing more than 700 structures, we highlight the basic design principles and their influence on the optical and electrical structure of the acceptor molecules and review their photovoltaic performance obtained so far. This Review should give an extensive overview of the plenitude of acceptor motifs but will also help to understand which structures and strategies are beneficial for designing materials for highly efficient non-fullerene organic solar cells.

摘要

有机太阳能电池正处于下一个时代的开端。对非富勒烯受体的关注转变引入了大量有机n型材料,并极大地提高了有机光伏的功率转换效率,目前已超过18%,这一数值在几年前还被认为是无法达到的。在本综述中,我们总结了2018 - 2020年期间梯形稠环非富勒烯受体设计的最新进展。我们专注于单层异质结太阳能电池,而省略了串联结构以及三元太阳能电池。通过分析700多种结构,我们突出了基本设计原则及其对受体分子光学和电学结构的影响,并回顾了目前所获得的它们的光伏性能。本综述应能广泛概述受体基序的丰富性,但也将有助于理解哪些结构和策略有利于设计用于高效非富勒烯有机太阳能电池的材料。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4daf/9286321/ba42379367a4/ae1c01737_0001.jpg

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