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A transparent electrochromic metal-insulator switching device with three-terminal transistor geometry

机译:具有三端晶体管几何形状的透明电致变色金属-绝缘体开关装置

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摘要

Proton and hydroxyl ion play an essential role for tuning functionality of oxides because their electronic state can be controlled by modifying oxygen off-stoichiometry and/or protonation. Tungsten trioxide (WO3), a well-known electrochromic (EC) material for smart window, is a wide bandgap insulator, whereas it becomes a metallic conductor HxWO3 by protonation. Although one can utilize electrochromism together with metal-insulator (MI) switching for one device, such EC-MI switching cannot be utilized in current EC devices because of their two-terminal structure with parallel-plate configuration. Here we demonstrate a transparent EC-MI switchable device with three-terminal TFT-type structure using amorphous (a-) WO3 channel layer, which was fabricated on glass substrate at room temperature. We used water-infiltrated nano-porous glass, CAN (calcium aluminate with nano-pores), as a liquid-leakage-free solid gate insulator. At virgin state, the device was fully transparent in the visible-light region. For positive gate voltage, the active channel became dark blue, and electrical resistivity of the a-WO3 layer drastically decreased with protonation. For negative gate voltage, deprotonation occurred and the active channel returned to transparent insulator. Good cycleability of the present transparent EC-MI switching device would have potential for the development of advanced smart windows.
机译:质子和氢氧根离子对于调节氧化物的功能起着至关重要的作用,因为可以通过改变化学计量比和/或质子化来控制其电子状态。三氧化钨(WO3)是一种众所周知的用于智能窗户的电致变色(EC)材料,是一种宽带隙绝缘体,而通过质子化变成金属导体HxWO3。尽管可以将电致变色与金属绝缘体(MI)开关一起用于一台设备,但由于此类EC-MI开关的两端结构为平行板结构,因此无法在当前的EC设备中使用。在这里,我们演示了一种使用非晶(a-)WO3沟道层的具有三端TFT型结构的透明EC-MI可切换器件,该器件在室温下制造于玻璃基板上。我们使用浸水的纳米多孔玻璃CAN(具有纳米孔的铝酸钙)作为无漏液的固体栅绝缘体。在原始状态下,该设备在可见光区域完全透明。对于正的栅极电压,活动通道变为深蓝色,并且a-WO3层的电阻率随质子化而急剧下降。对于负的栅极电压,发生了去质子化,有源通道返回到透明绝缘体。本透明EC-MI开关设备的良好循环能力将具有开发高级智能窗的潜力。

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