Zhao Wenrui, Ding Jiamin, Zou Ye, Di Chong-An, Zhu Daoben
Beijing National Laboratory for Molecular Sciences, CAS Key Laboratory of Organic Solids, Institute of Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
Chem Soc Rev. 2020 Oct 19;49(20):7210-7228. doi: 10.1039/d0cs00204f.
Doping is essential to manipulate the electrical performance of both thermoelectric (TE) materials and organic semiconductors (OSCs). Although organic thermoelectric (OTE) materials have experienced a rapid development over the past decade, the chemical doping of OSCs for TE applications lags behind, which has limited further breakthroughs in this cutting-edge field. Recently, increasing efforts have been devoted to the development of energetically matched host and dopant molecules, exploring novel doping methods and revealing the doping mechanisms. This tutorial review covers the basic mechanisms, fundamental requirements, recent advances and remaining challenges of chemical doping in OSCs for TE applications. We first present the basic knowledge of the trade-off relationship in TE materials and its critical requirements for doped OSCs, followed by a brief introduction of recent advances in the molecular design of OSCs and dopants. Moreover, we provide an overview of the existing categories of doping mechanisms and methods, and more importantly, emphasize the summarized doping strategies for the state-of-the-art OTE materials. Finally, challenges and perspectives on the chemical doping of OSCs are proposed to highlight the research directions that deserve attention towards a bright future of OTE materials.
掺杂对于调控热电(TE)材料和有机半导体(OSC)的电学性能至关重要。尽管有机热电(OTE)材料在过去十年中取得了快速发展,但用于TE应用的OSC的化学掺杂却滞后了,这限制了这一前沿领域的进一步突破。最近,人们越来越致力于开发能量匹配的主体和掺杂剂分子,探索新型掺杂方法并揭示掺杂机制。本教程综述涵盖了用于TE应用的OSC中化学掺杂的基本机制、基本要求、最新进展和剩余挑战。我们首先介绍TE材料中权衡关系的基本知识及其对掺杂OSC的关键要求,随后简要介绍OSC和掺杂剂分子设计的最新进展。此外,我们概述了现有的掺杂机制和方法类别,更重要的是,强调了针对最先进OTE材料总结出的掺杂策略。最后,提出了关于OSC化学掺杂的挑战和展望,以突出在OTE材料光明未来中值得关注的研究方向。