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新型单重态裂变功能聚合物材料的研究进展。

Recent Advance in the Development of Singlet-Fission-Capable Polymeric Materials.

机构信息

State Key Laboratory of Advanced Technology for Materials Synthesis and Processing, Center of Smart Materials and Devices, Wuhan University of Technology, Wuhan, 430070, China.

International School of Materials Science and Engineering, Wuhan University of Technology, Wuhan, 430070, China.

出版信息

Macromol Rapid Commun. 2024 Jan;45(1):e2300241. doi: 10.1002/marc.202300241. Epub 2023 Aug 15.

Abstract

Singlet fission (SF) is a spin-allowed process in which a higher-energy singlet exciton is converted into two lower-energy triplet excitons via a triplet pair intermediate state. Implementing SF in photovoltaic devices holds the potential to exceed the Shockley-Queisser limit of conventional single-junction solar cells. Although great progress has been made in exploiting the underlying mechanism of SF over the past decades, the scope of materials capable of SF, particularly polymeric materials, remains poor. SF-capable polymer is one of the most potential candidates in the implementation of SF into devices due to their distinct superiorities in flexibility, solution processability and self-assembly behavior. Notably, recent advancements have demonstrated high-performance SF in isolated donor-acceptor (D-A) copolymer chains. This review provides an overview of recent progress in the development of SF-capable polymeric materials, with a significant focus on elucidating the mechanisms of SF in polymers and optimizing the design strategies for SF-capable polymers. Additionally, the paper discusses the challenges encountered in this field and presents future perspectives. It is expected that this comprehensive review will offer valuable insights into the design of novel SF-capable polymeric materials, further advancing the potential for SF implementation in photovoltaic devices.

摘要

单线态裂变 (SF) 是一种自旋允许的过程,其中高能单线态激子通过三重态对中间态转化为两个低能三重态激子。在光伏器件中实现 SF 有可能超过传统单结太阳能电池的肖克利-奎塞尔极限。尽管在过去几十年中,人们在利用 SF 的基本机制方面取得了巨大进展,但能够实现 SF 的材料范围,特别是聚合物材料,仍然很有限。SF 聚合物是将 SF 应用于器件的最有潜力的候选材料之一,因为它们在灵活性、溶液加工性和自组装行为方面具有明显的优势。值得注意的是,最近的进展已经证明了在孤立的给体-受体 (D-A) 共聚物链中具有高性能的 SF。本综述提供了 SF 聚合物材料的最新进展概述,重点阐述了聚合物中 SF 的机制以及优化 SF 聚合物设计策略。此外,本文还讨论了该领域遇到的挑战并提出了未来展望。预计本综述将为新型 SF 聚合物材料的设计提供有价值的见解,进一步推进 SF 在光伏器件中的应用潜力。

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