Optical Assets of in situ Electro-assembled Platinum Black Nanolayers

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Abstract

Optoelectronic technology has been increasingly driven towards miniaturization. In this regard, maintaining the optical properties of the bulk materials while reducing their size is a critical need. How thin must the film be to preserve the bulk materiaĺs optical absorbance and reflectance characteristics? This is the central question for our study of the in situ electro-assembly broad band optical absorber films of platinum in non-aqueous solution of PtCl4. By reducing the in situ constructed film to sub-visible-wavelength thicknesses, the measured reflectance in the region from the ultraviolet to the infrared remained close to that exhibited by the micrometre-width films. These platinum black films broadly absorb electromagnetic waves at a sub-incident-wavelength thickness owing to their plasmonically increased absorbance cross-section. Simulation of various incident energy electron trajectories gives insights into the electron depth through the porous platinum black of ρ = 1.6 g/cm3 and previews the optical behaviour close to the atomic thickness.

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Stanca, S. E., Hänschke, F., Zieger, G., Dellith, J., Ihring, A., Undisz, A., & Meyer, H. G. (2017). Optical Assets of in situ Electro-assembled Platinum Black Nanolayers. Scientific Reports, 7(1). https://doi.org/10.1038/s41598-017-14630-3

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