离子液体电双层晶体管的界面结构研究:微观结构与器件性能的关系

Hyomen Kagaku Pub Date : 2017-01-01 DOI:10.1380/jsssj.38.419
Y. Yokota, A. Imanishi, T. Uemura, J. Takeya, K. Fukui
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引用次数: 0

摘要

采用调频原子力显微镜研究了离子液体/rubrene单晶界面的结构性质。rubrene分子在离子液体中的自发溶解是由表面缺陷(如氧化的rubrene或空位)触发的,无论初始条件如何,都会形成一个干净的界面。力曲线测量表明,在界面处形成了离子液体分子的溶剂化层。我们还测量了基于离子液体/rubrene单晶界面的双电层场效应晶体管的电学特性。与常规装置相比,在一天的时间内,场诱导职业的迁移率逐渐增加,与自发溶解的时间尺度一致。这些特殊的性质是讨论了关于电双层晶体管的微观理解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interfacial Structural Investigations of Electric Double Layer Transistors Using Ionic Liquid: Relation between Microscopic Structures and Device Performances: —界面構造と電気二重層FET特性との相関—
The structural properties of ionic liquid/rubrene single-crystal interfaces were investigated using frequency modulation atomic force microscopy. The spontaneous dissolution of rubrene molecules into the ionic liquid was triggered by surface defects such as an oxidized rubrene or a vacancy, leading to the formation of a clean interface irrespective of the initial conditions. Force curve measurements revealed that a few solvation layers of ionic liquid molecules formed at the interface. We have also measured electric characteristics of electric double layer field-effect transistor based on the ionic liquid/rubrene single crystal interfaces. In contrast to usual devices, the mobility of field induced career was found to gradually increase with time for a day, consistent with the time scale of the spontaneous dissolution. These specific properties are discussed with respect to the microscopic understanding of electric doublelayer transistors.
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