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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Surface-Enhanced Raman Spectroscopy Using Gold-Core Platinum-Shell Nanoparticle Film Electrodes:Toward a Versatile Vibrational Strategy for Electrochemical Interfaces
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Surface-Enhanced Raman Spectroscopy Using Gold-Core Platinum-Shell Nanoparticle Film Electrodes:Toward a Versatile Vibrational Strategy for Electrochemical Interfaces

机译:使用金芯铂壳纳米颗粒薄膜电极的表面增强拉曼光谱:电化学接口的通用振动策略。

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The aim of this work is to further improve the molecular generality and substrate generality of SERS (i.e.,to fully optimize the SERS activity of transition-metal electrodes).We utilized a strategy of borrowing high SERS activity from the Au core based on Au-core Pt-shell (Au@Pt) nanoparticle film electrodes,which can be simply and routinely prepared.The shell thickness from about one to five monolayers of Pt atoms can be well controlled by adjusting the ratio of the number of Au seeds to Pt(IV) ions in the solution.The SERS experimental results of carbon monoxide adsorption indicate that the enhancement factor for the Au@Pt nanoparticle film electrodes is more than 2 orders of magnitude larger than that of electrochemically roughened Pt electrodes.The practical virtues of the present film electrodes for obtaining rich and high-quality vibrational information for diverse adsorbates on transition metals are pointed out and briefly illustrated with systems of CO,hydrogen,and benzene adsorbed on Pt.We believe that the electrochemical applications of SERS will be broadened with this strategy,in particular,for extracting detailed vibrational information for adsorbates at transition-metal electrode interfaces.
机译:这项工作的目的是进一步提高SERS的分子通用性和底物通用性(即,充分优化过渡金属电极的SERS活性)。我们采用了基于Au-核芯Pt-壳(Au @ Pt)纳米颗粒薄膜电极,可以简单,常规地制备。通过调节Au种子数与Pt的比值,可以很好地控制约1-5个Pt原子单层的壳厚度( IV)溶液中的离子.SERS吸附一氧化碳的实验结果表明,Au @ Pt纳米颗粒薄膜电极的增强因子比电化学粗糙化的Pt电极的增强因子大2个数量级以上。指出并简要说明了膜电极,该膜电极用于获得过渡金属上各种吸附物的丰富和高质量的振动信息,并通过CO,氢和苯的吸附系统进行了简要说明。我们认为,利用该策略将扩大SERS的电化学应用,特别是用于提取过渡金属电极界面吸附物的详细振动信息。

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