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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Charge Transport Model Based on Single-Layered Grains and Grain Boundaries for Polycrystalline Pentacene Thin-Film Transistors
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Charge Transport Model Based on Single-Layered Grains and Grain Boundaries for Polycrystalline Pentacene Thin-Film Transistors

机译:基于单层晶粒和晶界的多并五苯薄膜晶体管电荷传输模型

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摘要

The charge transport process in organic thin-film transistors (OTFTs) has always been under intensive research while the mechanism is still controversial, even in the small-molecule OTFTs. In this study, we report on a transport model for interpreting the charge transport mechanism in polycrystalline pentacene XFTs. By investigating the growth mode of pentacene films and the distribution of charge carriers in the channel of OTFTs, a transport model involving two-dimensional single-layered grains and grain boundaries (GBs), namely the two-dimensional grain boundary (TDGB) model, is pro-posed for describing the charge transport process in polycrystalline pentacene TFTs. An analytical expression for the field-effect mobility could be obtained from the model. The model is applied to explain the mobility dependence on the grain sizes at the first monolayer of pentacene films, temperature and on gate voltage in polycrystalline pentacene TFTs, with good agreement obtained. In addition, the values of some crucial parameters are given by the simulations based on the model.
机译:有机薄膜晶体管(OTFT)中的电荷传输过程一直在深入研究中,而该机制仍存在争议,即使在小分子OTFT中也是如此。在这项研究中,我们报告了一种用于解释多晶并五苯XFT中电荷传输机制的传输模型。通过研究并五苯薄膜的生长模式和OTFT沟道中电荷载流子的分布,提出了涉及二维单层晶粒和晶界(GBs)的传输模型,即二维晶界(TDGB)模型,建议用于描述多并五苯TFT中的电荷传输过程。可以从模型中获得场效应迁移率的解析表达式。该模型用于解释迁移率对并五苯薄膜第一单层的晶粒尺寸,温度和多并五苯TFT中栅极电压的依赖性,并获得了良好的一致性。此外,一些关键参数的值由基于模型的仿真给出。

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