材料科学
氢化物
表面等离子共振
氢
纳米颗粒
等离子体子
透射率
合金
金属
薄膜
纳米技术
基质(水族馆)
光电子学
冶金
化学
有机化学
地质学
海洋学
作者
Lars J. Bannenberg,Ferry Anggoro Ardy Nugroho,Herman Schreuders,Ben Norder,Thu Trang Trinh,Nina‐Juliane Steinke,A.A. van Well,Christoph Langhammer,B. Dam
标识
DOI:10.1021/acsami.8b22455
摘要
( y = 0.15-0.30) alloys, we directly compare these two systems and establish that they are distinctively different. We show that the dissimilar optical response is not caused by the different optical readout principles but results from a fundamentally different structural response to hydrogen due to the different nanostructurings. The measurements empirically suggest that these differences cannot be fully accounted by surface effects but that the nature of the film-substrate interaction plays an important role and affects both the hydrogen solubility and the metal-to-metal hydride transition. In a broader perspective, our results establish that the specifics of nanoconfinement dictate the structural properties of metal hydrides, which in turn control the properties of nanostructured devices including the sensing characteristics of optical hydrogen sensors and hydride-based active plasmonic systems.
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