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Galvanic Replacement Reaction as a Route to Prepare Nanoporous Aluminum for UV Plasmonics

机译:电置换反应作为制备紫外线等离子纳米多孔铝的一种途径

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摘要

There is a growing interest in extending plasmonics applications into the ultraviolet region of the electromagnetic spectrum. Noble metals are commonly used in plasmonic, but their intrinsic optical properties limit their use above 350 nm. Aluminum is probably the most suitable material for UV plasmonics, and in this work we fabricated substrates of nanoporous aluminum starting from an alloy of Al Mg . The porous metal is obtained by means of a galvanic replacement reaction. Such nanoporous metal can be exploited to achieve a plasmonic material suitable for enhanced UV Raman spectroscopy and fluorescence. Thanks to the large surface to volume ratio, this material represents a powerful platform for promoting interaction between plasmonic substrates and molecules in the UV.
机译:在将等离激元应用扩展到电磁光谱的紫外线区域中,人们越来越感兴趣。贵金属通常用于等离子体,但其固有的光学性质限制了它们在350 nm以上的用途。铝可能是最适合用于紫外线等离子体的材料,在这项工作中,我们从Al Mg合金开始制备了纳米多孔铝的基底。多孔金属通过电流置换反应获得。可以利用这种纳米多孔金属来获得适用于增强的拉曼光谱和荧光的等离子体材料。由于具有大的表面体积比,这种材料代表了一个强大的平台,可促进等离子体衬底与紫外线分子之间的相互作用。

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