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首页> 外文期刊>Mikrochimica Acta: An International Journal for Physical and Chemical Methods of Analysis >Flower-like gold nanostructures electrodeposited on indium tin oxide (ITO) glass as a SERS-active substrate for sensing dopamine
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Flower-like gold nanostructures electrodeposited on indium tin oxide (ITO) glass as a SERS-active substrate for sensing dopamine

机译:电沉积在铟锡氧化物(ITO)玻璃上的花状金纳米结构,作为用于检测多巴胺的SERS活性基质

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摘要

Flower-like gold nanostructures (so called gold nanoflowers) were electrodeposited on indium tine oxide (ITO) glass and served as a SERS-active substrate for sensing dopamine. A double-potential method was applied for the deposition of gold nanostructures on the glass. The density, size, and morphology of the gold nanostructures were controlled by adjusting parameters such as deposition potentials, duration, and concentrations of gold precursors. The particle density on the glass was controlled by changing the overvoltage potentials, while the size and morphology were controlled by changing the concentration of gold precursors and growth times of Gold crystal seeds. The intensity of the Raman spectrum of dopamine was distinctly enhanced on the gold nanostructures with unique flower-like topography, thereby demonstrating the utility of this SERS-active substrate that is facilely obtained by the double-potential deposition method without supporting electrolytes.
机译:花状的金纳米结构(所谓的金纳米花)被电沉积在氧化铟锡(ITO)玻璃上,并用作SERS活性底物,用于检测多巴胺。采用双电势方法在玻璃上沉积金纳米结构。金纳米结构的密度,大小和形态是通过调节参数来控制的,例如沉积电位,持续时间和金前驱体的浓度。通过改变过电压电位来控制玻璃上的颗粒密度,而通过改变金前体的浓度和金晶种的生长时间来控制尺寸和形态。多巴胺的拉曼光谱强度在具有独特花状形貌的金纳米结构上得到了显着增强,从而证明了这种SERS活性底物的实用性,该底物是通过双电势沉积方法轻松获得的,无需支持电解质。

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