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February 12, 2013Nanotechnology

Plasmonic Ag nanoparticles via environment-benign atmospheric microplasma electrochemistry

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Authors

XHXu HuangXZXiaoxia ZhongYLYi Lu

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Overview

Laboratory study demonstrates tunable synthesis of silver nanoparticles via atmospheric microplasma electrochemistry, highlighting a green pathway for designing plasmonic nanomaterials.

Key Points

  • To assess the synthesis of plasmonic silver nanoparticles using atmospheric-pressure microplasma-assisted electrochemistry without toxic chemical reducing agents.
  • Generated silver nanoparticles via atmospheric-pressure microplasma direct reduction of silver ions in electrolytic solution.
  • Evaluated particle growth across varying electrochemical parameters, including electrolyte concentration and reaction temperature.
  • Tested nanoparticle formation both in the presence and absence of chemical stabilizers.
  • Modulating electrolyte concentration and reaction temperature controlled the size and dispersion of the resulting silver nanoparticles.
  • Direct microplasma reduction eliminated the requirement for toxic chemical reducing agents and achieved controlled nanoparticle formation even without stabilizing agents.

Cite This Study

Huang et al. (2013) studied this question.

synapsesocial.com/papers/6aa8ed79262dd5f9576bf89ehttps://doi.org/10.1088/0957-4484/24/9/095604
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