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烷基链长度对蒽基有机半导体电荷传输性能的影响。

Effect of Alkyl Chain Length on Charge Transport Property of Anthracene-Based Organic Semiconductors.

作者信息

Zhang Dongwei, Yokomori So, Kameyama Ryohei, Zhao Changbin, Ueda Akira, Zhang Lei, Kumai Reiji, Murakami Youichi, Meng Hong, Mori Hatsumi

机构信息

The Institute for Solid State Physics, The University of Tokyo, 5-1-5 Kashiwanoha, Kashiwa, Chiba 277-8581, Japan.

School of Advanced Materials, Peking University Shenzhen Graduate School, Peking University, Shenzhen 518055, China.

出版信息

ACS Appl Mater Interfaces. 2021 Jan 13;13(1):989-998. doi: 10.1021/acsami.0c16144. Epub 2020 Dec 17.

Abstract

Anthracene, a simple planar building block for organic semiconductors, shows strong intermolecular interactions and exhibits strong blue fluorescence. Thus, its derivatives have a great potential to integrate considerable charge carrier mobility and strong emission within a molecule. Here, we systematically studied the influence of alkyl chain length on the crystal structures, thermal properties, photophysical characteristics, electrochemical behaviors, and mobilities for a series of 2,6-di(4-alkyl-phenyl)anthracenes (C-Ph-Ants, where represents the alkyl chain length). Among them, C-Ph-Ants ( = 0, 1, 2, and 3) display similar layered herringbone (LHB) packing motifs, which facilitate two-dimensional charge transport and thereby enables high-performance organic field-effect transistors (OFETs). All C-Ph-Ants exhibit similar work functions and show strong blue fluorescence with photoluminescence quantum yields (PLQY) of approximately 40% in toluene. In addition, the absolute powder PLQYs of C-, C-, C-, C-, and C-Ph-Ants are 24.6, 8.2, 5.7, 10.9, and 8.6%, respectively. Note that the alkyl chain length shows a significant effect on the charge mobilities of C-Ph-Ants. Our newly synthesized C-, C-, and C-Ph-Ants show hole mobilities of up to 2.40, 1.34, and 1.00 cm V s, respectively, with mobilities of 3.40, 1.57, and 0.82 cm V s for C-, C-, and C-Ph-Ants, indicating an increasing tendency of mobility with shorter alkyl chain length. This feature is related to the microstructures of the thin films, which reveal the enhanced film order, crystallinity, and grain size with a decrease in the alkyl chain length. Moreover, we theoretically analyze the intermolecular transfer integrals of HOMOs, which increase at T-shaped contacts as the alkyl chain length decreases, which improves the intermolecular charge transport properties, leading to the increases in mobility. Interestingly, the anisotropy of the transfer integral tends to decrease upon substitution with longer alkyl chains, suggesting that alkyl chain adjustments may facilitate isotropic charge transport property in 2,6-alkylated anthracenes.

摘要

蒽是有机半导体的一种简单平面结构单元,具有很强的分子间相互作用并呈现出强烈的蓝色荧光。因此,其衍生物在将可观的电荷载流子迁移率和强发射特性整合于一个分子中具有巨大潜力。在此,我们系统地研究了烷基链长度对一系列2,6 - 二(4 - 烷基 - 苯基)蒽(C - Ph - Ants,其中 代表烷基链长度)的晶体结构、热性质、光物理特性、电化学行为及迁移率的影响。其中,C - Ph - Ants( = 0、1、2和3)呈现出相似的层状人字形(LHB)堆积模式,这有利于二维电荷传输,从而能够实现高性能有机场效应晶体管(OFET)。所有C - Ph - Ants均表现出相似的功函数,并在甲苯中呈现出强烈的蓝色荧光,其光致发光量子产率(PLQY)约为40%。此外,C - 、C - 、C - 、C - 和C - Ph - Ants的绝对粉末PLQY分别为24.6%、8.2%、5.7%、10.9%和8.6%。值得注意的是,烷基链长度对C - Ph - Ants的电荷迁移率有显著影响。我们新合成的C - 、C - 和C - Ph - Ants分别显示出高达2.40、1.34和1.00 cm² V⁻¹ s⁻¹的空穴迁移率,而C - 、C - 和C - Ph - Ants的迁移率分别为3.40、1.57和0.82 cm² V⁻¹ s⁻¹,表明迁移率随烷基链长度缩短呈增加趋势。这一特性与薄膜的微观结构有关,随着烷基链长度的减小,薄膜的有序度、结晶度和晶粒尺寸增强。此外,我们从理论上分析了最高占据分子轨道(HOMO)的分子间转移积分,随着烷基链长度的减小,T形接触处的转移积分增加,这改善了分子间电荷传输性质,导致迁移率增加。有趣的是,随着用更长的烷基链取代,转移积分的各向异性趋于减小,这表明烷基链的调整可能有助于2,6 - 烷基化蒽中的各向同性电荷传输性质。

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