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首页> 外文期刊>Nanotechnology >Electro-architected porous platinum on metallic multijunction nanolayers to optimize their optical properties for infrared sensor application
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Electro-architected porous platinum on metallic multijunction nanolayers to optimize their optical properties for infrared sensor application

机译:在金属多结纳米层上的电架多孔铂铂金,以优化其对红外传感器应用的光学性能

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Tailoring the physicochemical properties of the metallic multijunction nanolayers is a prerequisite for the development of microelectronics. From this perspective, a desired lower reflectance of infrared radiation was achieved by an electrochemical deposition of porous platinum in nonaqueous media on silver mirror supported nickel-chrome and nickel-titanium metallic films with incremental decreasing thicknesses from 80-10 nm. The electro-assembled architectures were examined by means of scanning electron microscopy and Fourier transform infrared spectroscopy and it was observed that the layer and sublayer thicknesses and resistivities have a substantial effect upon the porous platinum morphology and its optical properties. It is here reported that the augmentation of the metallic layer electrical conductivity determines the electroformation of more compact platinum nanolayers. Moreover, the platinum black coating of metallic nanolayers causes a considerable decrease of the reflectance in the region from 1000-8000 cm(-1).
机译:剪裁金属多结纳米的物理化学性质是微电子发展的先决条件。从这种角度来看,通过在银镜中的非水介质中的多孔铂在银镜中的镍铬和镍 - 钛金属膜上的电化学沉积来实现红外辐射的所需较低反射率,从80-10nm增加厚度。通过扫描电子显微镜和傅里叶变换红外光谱检查电组装架构,观察到层和子层厚度和电阻性对多孔铂的形态及其光学性质具有显着影响。这里报道了金属层电导率的增强确定了更紧凑的铂纳米层的电铸。此外,金属纳米纳米的铂黑涂层导致从1000-8000cm(-1)的区域的反射率相当大的降低。

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