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聚噻吩作为有机太阳能电池中的电子供体。

Polythiophenes as electron donors in organic solar cells.

作者信息

Yuan Xiyue, Li Jianglong, Deng Wanting, Zhou Xia, Duan Chunhui

机构信息

Institute of Polymer Optoelectronic Materials and Devices, Guangdong Basic Research Center of Excellence for Energy & Information Polymer Materials, State Key Laboratory of Luminescent Materials and Devices, South China University of Technology China

School of New Energy, Ningbo University of Technology China.

出版信息

Chem Sci. 2025 Jul 21. doi: 10.1039/d5sc03154k.

Abstract

Recent advancements in organic solar cells (OSCs) highlight the critical need for low-cost, readily available polymer donors to facilitate the commercialization of OSCs. Among the various photovoltaic materials, polythiophene (PT) and its derivatives have emerged as the most promising candidates for commercial applications, primarily due to their affordability and ease of scalable synthesis. Over the past few years, the combination of PTs with nonfullerene acceptors (NFAs) has led to significant improvements in photovoltaic efficiency. This paper provides a comprehensive overview of design strategies for polythiophene electron donors utilized in NFA-based OSCs, focusing on the modulation of energy levels and aggregation properties. It also evaluates recent progress in optimizing film morphology in PT:NFA blends, emphasizing key factors such as donor-acceptor miscibility, solution-state aggregation control, and film-formation kinetics. Additionally, the paper explores the applications of PTs in all-polymer OSCs and large-area OSCs and the stability of PT-based OSCs. Finally, the paper addresses scientific challenges associated with PT-based OSCs, aiming to provide guidance and stimulate new ideas for further research.

摘要

有机太阳能电池(OSC)的最新进展凸显了对低成本、易于获取的聚合物给体的迫切需求,以推动OSC的商业化。在各种光伏材料中,聚噻吩(PT)及其衍生物已成为商业应用中最有前景的候选材料,主要是因为它们价格实惠且易于进行可扩展合成。在过去几年中,PT与非富勒烯受体(NFA)的组合已使光伏效率得到显著提高。本文全面概述了用于基于NFA的OSC的聚噻吩电子给体的设计策略,重点关注能级和聚集性质的调控。它还评估了优化PT:NFA共混物薄膜形态的最新进展,强调了诸如给体-受体混溶性、溶液态聚集控制和成膜动力学等关键因素。此外,本文探讨了PT在全聚合物OSC和大面积OSC中的应用以及基于PT的OSC的稳定性。最后,本文阐述了与基于PT的OSC相关的科学挑战,旨在为进一步研究提供指导并激发新的思路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/391f/12377199/0a7468b29358/d5sc03154k-f1.jpg

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