Silver nanostructures synthesis via optically induced electrochemical deposition

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作者
Pan Li
Na Liu
Haibo Yu
Feifei Wang
Lianqing Liu
Gwo-Bin Lee
Yuechao Wang
Wen Jung Li
机构
[1] State Key Laboratory of Robotics,Department of Power Mechanical Engineering
[2] Shenyang Institute of Automation,Department of Mechanical and Biomedical Engineering
[3] Chinese Academy of Sciences,undefined
[4] University of Chinese Academy of Sciences,undefined
[5] School of Mechatronics Engineering and Automation,undefined
[6] Shanghai University,undefined
[7] Shanghai 200072,undefined
[8] China,undefined
[9] National Tsing Hua University,undefined
[10] City University of Hong Kong,undefined
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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.
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