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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Facile fabrication of homogeneous 3D silver nanostructures on gold-supported polyaniline membranes as promising SERS substrates
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Facile fabrication of homogeneous 3D silver nanostructures on gold-supported polyaniline membranes as promising SERS substrates

机译:在金支撑的聚苯胺膜上作为有希望的SERS基底轻松制造均质的3D银纳米结构

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We report a facile synthesis of large-area homogeneous three-dimensional (3D) Ag nanostructures on Au-supported polyaniline (PANI) membranes through a direct chemical reduction of metal ions by PANI. The citric acid absorbed on the Au nuclei that are prefabricated, on PANI membranes directs Ag nanoaprticles (AgNPs) to self-assemble into 3D Ag nanosheet structures. The fabricated hybrid metal nanostructures display uniform surface-enhanced Raman scattering (SERS) responses throughout the whole surface area, with an average enhancement factor of 10~6-10~7. The nanocavities formed by the stereotypical stacking of these Ag nanosheets and the junctions and gaps between two neighboring AgNPs are believed to be responsible for the strong SERS response upon plasmon absorption. These homogeneous metal nanostructure decorated PANI membranes can be used as highly efficient SERS substrates for sensitive detection of chemical and biological analytes.
机译:我们报告了一个简单的大面积均质三维(3D)Ag纳米结构在Au支撑的聚苯胺(PANI)膜上的合成,方法是通过PANI直接化学还原金属离子。在PANI膜上预制的Au核上吸收的柠檬酸引导Ag纳米质膜(AgNP)自组装成3D Ag纳米片结构。制备的杂化金属纳米结构在整个表面积上表现出均匀的表面增强拉曼散射(SERS)响应,平均增强因子为10〜6-10〜7。这些Ag纳米片的定型堆叠以及两个相邻AgNP之间的连接和间隙形成的纳米腔被认为是引起等离激元吸收后强烈的SERS响应的原因。这些均质的金属纳米结构装饰的PANI膜可用作高效SERS底物,用于化学和生物分析物的灵敏检测。

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