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基于溶液可加工苯并三噻吩(BTT)的有机半导体:最新进展与综述

Solution Processable Benzotrithiophene (BTT)-Based Organic Semiconductors: Recent Advances and Review.

作者信息

Patra Dhananjaya, Park Sungjune

机构信息

Department of Polymer-Nano Science and Technology, Jeonbuk National University, Jeonju, 54896, Korea.

Department of Nano Convergence Engineering, Jeonbuk National University, Jeonju, 54896, Korea.

出版信息

Macromol Rapid Commun. 2022 Nov;43(21):e2200473. doi: 10.1002/marc.202200473. Epub 2022 Jul 14.

Abstract

Conjugated polymers and small molecules (SMs) with fused electron-rich and electron-deficient building blocks are promising materials for low-cost organic electronic devices. Benzotrithiophene (BTT) is one such electron-rich hybrid building block composed of three fused thiophene moieties with an extended π-system that has been widely used to synthesize a variety of electronic materials. Additionally, BTT has a planar and sulfur-rich core with a number of distinct advantages, including structural diversity, tunable electro-optical properties and exceptional hole-transport behavior. So far, four BTT-based isomers have been synthesized on a gram scale from seven isomeric structures, three of which are symmetric (BTT1-3) and one of which is asymmetric (BTT5), for use in a variety of optoelectronic applications. However, no report summarizing the progress of BTT-based semiconductors for electronic applications is available. The current review presents an overview of the recent developments in BTT-based monomers, polymers and SMs, as well as their applications in energy harvesting. Additionally, recent advances on charge transport devices, most notably organic solar cells (OSCs), organic thin field-effect transistors (OTFTs), and perovskite solar cells (Pero-SCs) are also surveyed and summarized. It is anticipated that this comprehensive review will stimulate further research and development of future BTT-based electronic materials, particularly for low-cost and high-performance organic electronic devices.

摘要

具有富电子和缺电子稠合结构单元的共轭聚合物和小分子是用于低成本有机电子器件的有前途的材料。苯并三噻吩(BTT)就是这样一种富电子杂化结构单元,它由三个稠合的噻吩部分组成,具有扩展的π体系,已被广泛用于合成各种电子材料。此外,BTT具有平面且富含硫的核心,具有许多明显的优点,包括结构多样性、可调节的电光性质和出色的空穴传输行为。到目前为止,已经从七种异构结构中以克级规模合成了四种基于BTT的异构体,其中三种是对称的(BTT1-3),一种是不对称的(BTT5),用于各种光电子应用。然而,目前尚无总结基于BTT的电子应用半导体进展的报告。本综述概述了基于BTT的单体、聚合物和小分子的最新进展,以及它们在能量收集方面的应用。此外,还对电荷传输器件,尤其是有机太阳能电池(OSC)、有机薄膜场效应晶体管(OTFT)和钙钛矿太阳能电池(Pero-SC)的最新进展进行了调查和总结。预计这篇全面的综述将刺激未来基于BTT的电子材料的进一步研究和开发,特别是用于低成本和高性能有机电子器件。

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