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通过光还原对超薄膜金的调谐。

Tuning of Ultra-Thin Gold Films by Photoreduction.

机构信息

ICFO-Institut de Ciencies Fotoniques, The Institute of Photonic Sciences, Castelldefels, Barcelona 08860, Spain.

Institute of Materials Science of Barcelona ICMAB-CSIC Campus UAB, Bellaterra 08193, Spain.

出版信息

ACS Appl Mater Interfaces. 2023 Mar 29;15(12):16204-16210. doi: 10.1021/acsami.2c22149. Epub 2023 Mar 20.

Abstract

Ultrathin metal films (UTMFs) are used in a wide range of applications, from transparent electrodes to infrared mirrors and metasurfaces. Due to their small thickness (5 nm), the electrical and optical properties of UTMFs can be changed by external stimuli, for example, by applying an electric field through an ion gel. It is also known that oxidized thin films and nanostructures of Au can be reduced by irradiating with short-wavelength light. Here we show that the resistance, reflectance, and resonant optical response of Au UTMFs is changed significantly by ultraviolet light. More specifically, photoreduction and oxidation processes can be sequentially applied for continuous tuning, with observed modulation ranges for sheet resistance (s) and reflectance of more than 40% and 30%, respectively. The proposed method has the potential for achieving reconfigurable UTMF structures and trimming their response to specific working points, e.g., a predetermined resonance wavelength and amplitude. This is also important for large scale deployment of such surfaces as one can compensate material nonuniformity, morphological, and structural dimension errors occurring during fabrication.

摘要

超薄金属膜(UTMFs)在许多应用中都有使用,从透明电极到红外反射镜和超表面。由于其厚度非常小(5nm),UTMF 的电学和光学性质可以通过外部刺激来改变,例如,通过在离子凝胶中施加电场。人们还知道,通过短波长光的照射可以还原氧化的金薄膜和纳米结构。在这里,我们表明,金 UTMFs 的电阻、反射率和共振光学响应可以通过紫外光显著改变。更具体地说,可以顺序应用光还原和氧化过程进行连续调谐,观察到的电阻(s)和反射率调制范围分别超过 40%和 30%。该方法具有实现可重构 UTMF 结构的潜力,并可以调整其对特定工作点的响应,例如预定的共振波长和幅度。这对于此类表面的大规模部署也很重要,因为可以补偿制造过程中出现的材料不均匀性、形态和结构尺寸误差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9e2/10064312/869b1a0c7723/am2c22149_0001.jpg

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