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Galvanic synthesis of three-dimensional and hollow metallic nanostructures

机译:三维空心金属纳米结构的电合成

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摘要

We report a low-cost, facile, and template-free electrochemical method of synthesizing three-dimensional (3D) hollow metallic nanostructures. The 3D nanoporous gold (3D-NPG) nanostructures were synthesized by a galvanic replacement reaction (GRR) using the different reduction potentials of silver and gold; hemispherical silver nanoislands were electrochemically deposited on cathodic substrates by a reverse-pulse potentiodynamic method without templates and then nanoporous gold layer replicated the shape of silver islands during the GRR process in an ultra-dilute electrolyte of gold(III) chloride trihydrate. Finally, the wet etching process of remaining silver resulted in the formation of 3D-NPG. During the GRR process, the application of bias voltage to the cathode decreased the porosity of 3D-NPG in the voltage range of 0.2 to -0.62 V. And the GRR process of silver nanoislands was also applicable to fabrication of the 3D hollow nanostructures of platinum and palladium. The 3D-NPG nanostructures were found to effectively enhance the SERS sensitivity of rhodamine 6G (R6G) molecules with a concentration up to 10-8 M.Electronic supplementary materialThe online version of this article (doi:10.1186/1556-276X-9-679) contains supplementary material, which is available to authorized users.
机译:我们报告了一种低成本,简便,无模板的合成三维(3D)空心金属纳米结构的电化学方法。 3D纳米多孔金(3D-NPG)纳米结构是通过使用银和金的不同还原电位通过电流置换反应(GRR)合成的。在没有模板的情况下,通过反向脉冲电位动力学方法将半球形银纳米岛电化学沉积在阴极基板上,然后在GRR过程中,纳米多孔金层在三水合氯化金(III)的超稀电解质中复制了银岛的形状。最后,剩余银的湿法蚀刻工艺导致形成3D-NPG。在GRR过程中,在0.2至-0.62 V的电压范围内,向阴极施加偏置电压会降低3D-NPG的孔隙率。银纳米岛的GRR过程也可用于制造铂的3D中空纳米结构和钯。发现3D-NPG纳米结构可有效增强罗丹明6G(R6G)分子的SERS敏感性,浓度最高可达10 -8 M.电子补充材料本文的在线版本(doi:10.1186 / 1556-276X-9-679)包含补充材料,授权用户可以使用。

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