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首页> 外文期刊>Angewandte Chemie >The Impact of Interlayer Electronic Coupling on Charge Transport in Organic Semiconductors: A Case Study on Titanylphthalocyanine Single Crystals
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The Impact of Interlayer Electronic Coupling on Charge Transport in Organic Semiconductors: A Case Study on Titanylphthalocyanine Single Crystals

机译:层间电子耦合对有机半导体电荷输送的影响:钛苯酞单晶单晶的案例研究

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摘要

Traditionally, it is believed that three-dimensional transport networks are preferable to those of lower dimensions. We demonstrate that inter-layer electronic couplings may result in a drastic decrease of charge mobilities by utilizing field-effect transistors (FET) based on two phases of titanyl phthalocyanine (TiOPc) crystals. The -phase crystals with electronic couplings along two dimensions show a maximum mobility up to 26.8cm(2)V(-1)s(-1). In sharp contrast, the -phase crystals with extra significant inter-layer electronic couplings show a maximum mobility of only 0.1cm(2)V(-1)s(-1). Theoretical calculations on the bulk crystals and model slabs reveal that the inter-layer electronic couplings for the -phase devices will diminish remarkably the device charge transport abilities owing to the coupling direction perpendicular to the current direction. This work provides new insights into the impact of the dimensionality and directionality of the packing arrangements on charge transport in organic semiconductors.
机译:传统上,据信,三维运输网络优于较低尺寸的运输网络。我们证明,通过利用基于钛酞菁(TiOPC)晶体的两相,层间电子联轴器可以通过利用场效应晶体管(FET)来导致电荷迁移率的急剧降低。沿两个尺寸的电子联轴器的相晶显示出高达26.8cm(2)V(-1)S(-1)的最大迁移率。在鲜明的对比度下,具有超大显着层间电子联轴器的相晶显示仅0.1cm(2)V(-1)s(-1)的最大迁移率。散装晶体和模型板上的理论计算表明,由于垂直于电流方向的联接方向,所以用于相位装置的层间电子联轴器将显着减小器件电荷传送能力。这项工作提供了对有机半导体中电荷运输的填充装置的维度和方向性的影响的新见解。

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