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首页> 外文期刊>Transactions of the Japan Society for Computational Engineering and Science >Structural Switching of Self-Assembled Monolayer by External Electric Field
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Structural Switching of Self-Assembled Monolayer by External Electric Field

机译:自组装单分子膜在外电场作用下的结构转换

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摘要

Self-assembled monolayers (SAMs) are used for adjusting the work function of metal electrodes in organic devices. Since the energy level difference between the HOMO or LUMO and the work function affects the electron injection through the metal-organic interfaces, fine tuning of the work function is of importance. To control the work function from external environment, external large electric field on low-density SAMs is reported to be effective. In order to obtain a direct evidence for the structural switching of the SAM, X-ray reflectivity measurements were performed. The result shows that the molecular tilting of 10° is induced by the external voltage application.
机译:自组装单分子膜(SAMs)用于调整有机设备中金属电极的功函数。由于HOMO或LUMO与功函数之间的能级差会影响通过金属有机界面的电子注入,因此对功函数进行微调非常重要。为了从外部环境控制功函数,据报道,低密度SAM上的外部大电场是有效的。为了获得有关SAM结构转换的直接证据,进行了X射线反射率测量。结果表明,外加电压可引起10°的分子倾斜。

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