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Fabrication of Hybrid Silver Microstructures from Vermiculite Templates as SERS Substrates

机译:从S石模板作为SERS基底制备杂化银微结构

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摘要

There is great interest in developing complex, 3D plasmonic materials with unusual structural properties. This can be achieved via template-assisted approaches exploiting scaffold elements to engineer unique plasmonic substrates, which would be otherwise impossible to synthesize. Herein, we present a novel, simple, and low-cost template-assisted method for producing interconnected 3-D silver microstructures by utilizing vermiculite, a well-known silicate, as both in-situ reductant and template for silver growth. The silicate network of the vermiculite can be easily removed by dissolution with hydrofluoric acid, which, simultaneously, leads to the formation of a magnesium fluoride skeleton supporting a plasmonically active silver film. Optical, morphological, and chemical properties of the materials were extensively investigated, revealing, for example, that hybrid silver microstructures can be exploited as valuable SERS substrates over a broad spectral range of excitation wavelengths.
机译:开发具有异常结构特性的复杂3D等离子体材料引起了人们极大的兴趣。这可以通过利用支架元素来设计独特的等离激元底物的模板辅助方法来实现,否则将无法合成这些底物。在这里,我们提出了一种新颖,简单,低成本的模板辅助方法,该方法通过利用ver石(一种众所周知的硅酸盐)作为原位还原剂和模板来生产互连的3D银微结构,从而生产互连的3-D银微结构。通过用氢氟酸溶解可以容易地除去the石的硅酸盐网络,这同时导致形成支撑等离激元活性银膜的氟化镁骨架。对材料的光学,形态和化学性质进行了广泛研究,例如,揭示出杂化银微结构可以在激发波长的宽光谱范围内用作有价值的SERS衬底。

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