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High performance SERS on nanoporous gold substrates synthesized by chemical de-alloying a Au-based metallic glass

机译:通过对Au基金属玻璃进行化学脱合金合成的纳米多孔金基底上的高性能SERS

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A Au20Cu48Ag7Pd5Si20 metallic glass precursor has been used to synthesize nanoporous gold by chemical de-alloying in a mixture of HNO3 and HF. Gold ligaments of size ranging from 45 to 100 nm were obtained as a function of HNO3 concentration, electrolyte temperature and de-alloying time. The as-prepared nanoporous gold exhibited strong surface enhanced Raman scattering (SERS) effect using 4,4'-bi-pyridine as probe molecule. For application in melamine sensing, the detection limit of 10(-6) M was achieved, which indicated that this biocompatible material has great potential as SERS active substrate. (C) 2017 Elsevier B.V. All rights reserved.
机译:Au20Cu48Ag7Pd5Si20金属玻璃前驱体已用于通过在HNO3和HF的混合物中进行化学脱合金来合成纳米多孔金。获得了大小为45至100 nm的金韧带,其是HNO3浓度,电解质温度和脱合金时间的函数。使用4,4'-联吡啶作为探针分子,制备的纳米多孔金表现出很强的表面增强拉曼散射(SERS)效应。为了在三聚氰胺感测中的应用,达到了10(-6)M的检出限,表明该生物相容性材料作为SERS活性底物具有巨大的潜力。 (C)2017 Elsevier B.V.保留所有权利。

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