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Silver nanostructures synthesis via optically induced electrochemical deposition

机译:通过光诱导电化学沉积合成银纳米结构

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摘要

We present a new digitally controlled, optically induced electrochemical deposition (OED) method for fabricating silver nanostructures. Projected light patterns were used to induce an electrochemical reaction in a specialized sandwich-like microfluidic device composed of one indium tin oxide (ITO) glass electrode and an optically sensitive-layer-covered ITO electrode. Silver polyhedral nanoparticles, triangular and hexagonal nanoplates, and nanobelts were controllably synthesized in specific positions at which projected light was illuminated. The silver nanobelts had rectangular cross-sections with an average width of 300 nm and an average thickness of 100 nm. By controlling the applied voltage, frequency, and time, different silver nanostructure morphologies were obtained. Based on the classic electric double-layer theory, a dynamic process of reduction and crystallization can be described in terms of three phases. Because it is template- and surfactant-free, the digitally controlled OED method facilitates the easy, low cost, efficient, and flexible synthesis of functional silver nanostructures, especially quasi-one-dimensional nanobelts.
机译:我们提出了一种新型的数控,光诱导电化学沉积(OED)方法来制造银纳米结构。在由一个氧化铟锡(ITO)玻璃电极和一个覆盖有光敏层的ITO电极组成的特殊的三明治状微流体装置中,使用投影的光图案来引发电化学反应。银多面体纳米颗粒,三角形和六边形的纳米板和纳米带可控地合成在特定位置,在这些特定位置照明投射的光。银纳米带的横截面为矩形,平均宽度为300 nm,平均厚度为100 nm。通过控制施加的电压,频率和时间,可获得不同的银纳米结构形态。基于经典的双电层理论,可以从三个方面描述还原和结晶的动态过程。由于它不含模板和表面活性剂,因此数控OED方法可轻松,低成本,高效且灵活地合成功能性银纳米结构,尤其是准一维纳米带。

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