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An antireflection transparent conductor with ultralow optical loss (2 ) and electrical resistance (6 Ω sq−1)

机译:一种抗反射透明导体具有超低的光损耗(2%)和电阻(6Ωsq-1)

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摘要

Transparent conductors are essential in many optoelectronic devices, such as displays, smart windows, light-emitting diodes and solar cells. Here we demonstrate a transparent conductor with optical loss of ∼1.6%, that is, even lower than that of single-layer graphene (2.3%), and transmission higher than 98% over the visible wavelength range. This was possible by an optimized antireflection design consisting in applying Al-doped ZnO and TiO2 layers with precise thicknesses to a highly conductive Ag ultrathin film. The proposed multilayer structure also possesses a low electrical resistance (5.75 Ω sq−1), a figure of merit four times larger than that of indium tin oxide, the most widely used transparent conductor today, and, contrary to it, is mechanically flexible and room temperature deposited. To assess the application potentials, transparent shielding of radiofrequency and microwave interference signals with ∼30 dB attenuation up to 18 GHz was achieved.
机译:透明导体在许多光电设备中至关重要,例如显示器,智能窗户,发光二极管和太阳能电池。在这里,我们展示了一种透明导体,其光学损耗为〜1.6%,甚至低于单层石墨烯(2.3%)的光学损耗,并且在可见光波长范围内的透射率高于98%。通过优化抗反射设计可以做到这一点,该设计包括将具有精确厚度的Al掺杂的ZnO和TiO2层施加到高导电性的Ag超薄膜上。拟议的多层结构还具有较低的电阻(5.75Ωsq -1 ),品质因数是当今最广泛使用的透明导体氧化铟锡的四倍,并且相反它具有机械柔韧性和室温沉积性。为了评估应用潜力,实现了对射频和微波干扰信号的透明屏蔽,其衰减高达18 GHz,衰减约30 dB。

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