电荷分离中的能量波动对有机半导体高效分子掺杂的关键作用

IF 10.4 1区 化学 Q1 CHEMISTRY, MULTIDISCIPLINARY
Yan Zeng, Guangchao Han, Yuanping Yi
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引用次数: 0

摘要

分子掺杂对于提高有机半导体的导电性以制造高性能有机电子器件至关重要。然而,掺杂效率受多种因素的影响,如掺杂薄膜的能级、能量波动、介电性质和分子堆积结构等,高效掺杂的内在机制仍不清楚。在此,我们通过对一系列富勒烯衍生物进行多级理论模拟,发现能量波动在激活分子掺杂的电荷分离中起着决定性作用。特别是,掺杂效率似乎会随着电荷极化能量的波动而呈指数增长。因此,虽然电荷迁移率有所下降,但实验电导率却随着能量波动的增加而提高。此外,研究还发现,只需在有机半导体中引入更灵活的侧链,就能有效增强极化能波动。这篇文章为有机半导体的高效分子掺杂铺平了道路。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The critical role of energetic fluctuations in charge separation for efficient molecular doping of organic semiconductors

Molecular doping is essential to improve the electrical conductivity of organic semiconductors for high-performance organic electronic devices. However, the doping efficiency is influenced by several factors, such as the energy levels, energetic fluctuations, dielectric properties, and molecular packing structures of the doped films, and the underlying mechanisms for high-efficiency doping are still unclear. Here, through multi-level theoretical simulations on a series of fullerene derivatives, we identify that the energetic fluctuations can play a decisive role in activating charge separation for molecular doping. In particular, the doping efficiency appears to be exponentially increased with the fluctuation of charge polarization energies. Therefore, although the charge mobility is somewhat decreased, the experimental electrical conductivity is improved with the increased energetic fluctuation. Moreover, it has been found that polarization energy fluctuation can be effectively enhanced by simply introducing side chains with greater flexibility into organic semiconductors. This article paves the way towards high-efficiency molecular doping of organic semiconductors.

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来源期刊
Science China Chemistry
Science China Chemistry CHEMISTRY, MULTIDISCIPLINARY-
CiteScore
14.40
自引率
7.30%
发文量
3787
审稿时长
2.2 months
期刊介绍: Science China Chemistry, co-sponsored by the Chinese Academy of Sciences and the National Natural Science Foundation of China and published by Science China Press, publishes high-quality original research in both basic and applied chemistry. Indexed by Science Citation Index, it is a premier academic journal in the field. Categories of articles include: Highlights. Brief summaries and scholarly comments on recent research achievements in any field of chemistry. Perspectives. Concise reports on thelatest chemistry trends of interest to scientists worldwide, including discussions of research breakthroughs and interpretations of important science and funding policies. Reviews. In-depth summaries of representative results and achievements of the past 5–10 years in selected topics based on or closely related to the research expertise of the authors, providing a thorough assessment of the significance, current status, and future research directions of the field.
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