材料科学
吸光度
可见光谱
光电子学
等离子体子
光探测
雷
光学
透射率
吸收(声学)
光伏
基质(水族馆)
光电探测器
光伏系统
复合材料
物理
生态学
海洋学
生物
地质学
作者
Charlene Ng,Lim Wei Yap,Ann Roberts,Wenlong Cheng,Daniel E. Gómez
标识
DOI:10.1002/adfm.201604080
摘要
Here, a black Au surface is presented: a material solely composed of Au that is capable of absorbing more than 92% of the incident light over a spectral region ranging from 300 to 600 nm and that can maintain a high absorbance (above 70%) for wavelengths up to 800 nm. The black Au surface is fabricated by a simple and scalable template‐assisted physical vapor deposition technique and possesses the flexibility of adhering to any arbitrary substrate. The high absorbance of Au originates from the close packing of high aspect ratio Au nanotubes possessing a random tapered wall thickness. Fabry–Perot resonances of gap‐plasmon modes between the Au nanotubes are also responsible for the strong suppression of reflectance of black Au as demonstrated by finite element method simulations. Furthermore, the ability of this surface to drive photochemical transformations under visible light illumination is demonstrated. Hence, black Au could provide a new paradigm for the use of highly absorbing metal nanostructures to effectively harvest the entire visible spectrum for photorelated applications such as solar fuel production, photodetection, and photovoltaics.
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