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Vertical Transport Control of Electrical Charge Carriers in Insulator/Oxide Semiconductor Hetero-structure

机译:绝缘体/氧化物半导体异质结构中电荷载流子的垂直传输控制

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摘要

The technology for electrical current passing through an insulator thin-film between two electrodes is newly getting spotlights for substantial potentials toward advanced functional devices including a diode and a resistive switching device. However, depending on an electrode-limited conduction mechanisms of the conventional devices, a narrow processing window for a thickness of the insulator thin-film and an inability to control a magnitude and direction of the currents are challenges to overcome. Herein, we report a new approach to enable electrical charge carriers to pass stably through a relatively-thick insulator layer and to control a magnitude and polarity of the currents by applying an oxide semiconductor electrode in a metal/insulator/metal structure. We reveal that the electrical conduction in our devices follows a space charge-limited conduction mechanism which mainly depends on the charge carriers injected from contacts. Therefore, characteristics of the current including a current value and a rectification ratio of input signal are precisely controlled by electrical properties of the oxide semiconductor electrode. The unique current characteristics in metal/insulator/oxide semiconductor structures give extendable inspirations in electronic materials science, even a prominent solution for various technology areas of electronics.
机译:电流通过两个电极之间的绝缘体薄膜的技术正成为聚光灯,它具有相当大的潜力,朝着包括二极管和电阻开关器件的先进功能器件发展。然而,取决于常规装置的电极受限的传导机制,克服绝缘体薄膜的厚度的狭窄处理窗口以及不能控制电流的大小和方向的挑战是克服的。本文中,我们报告了一种新方法,该方法通过在金属/绝缘体/金属结构中应用氧化物半导体电极,使电荷载流子稳定地穿过相对较厚的绝缘层,并控制电流的大小和极性。我们发现,我们设备中的导电遵循空间电荷受限的传导机制,该机制主要取决于从触点注入的电荷载流子。因此,包括电流值和输入信号的整流比的电流的特性由氧化物半导体电极的电特性精确地控制。金属/绝缘体/氧化物半导体结构中独特的电流特性为电子材料科学提供了可扩展的灵感,甚至是电子技术领域的杰出解决方案。

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