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王文慧

  • Personal Information
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  • Education Level: With Certificate of Graduation for Doctorate Study
  • Professional Title: 副教授
  • Status: Employed
  • Alma Mater: 中国科学院大学
  • Have Any Overseas Experience: No
  • Foreign Personnel or Not: No

Papers

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Propagating Surface Plasmon Polaritons: Towards Applications for Remote-Excitation Surface Catalytic Reactions

Release Time:2025-04-30
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Date:
2025-04-30
Title of Paper:
Propagating Surface Plasmon Polaritons: Towards Applications for Remote-Excitation Surface Catalytic Reactions
Journal:
Materials Views
Summary:
Plasmonics is a well-established fi eld, exploiting the interaction of light and metals at the nanoscale; with the help of surface plasmon polaritons, remote-excitation can also be observed by using silver or gold plasmonic waveguides. Recently, plasmonic catalysis was established as a new exciting platform for heterogeneous catalytic reactions. Recent reports present remote-excitation surface catalytic reactions as a route to enhance the rate of chemical reactions, and offer a pathway to control surface catalytic reactions. In this review, we focus on recent advanced reports on silver plasmonic waveguide for remote-excitation surface catalytic reactions. First, the synthesis methods and characterization techniques of sivelr nanowire plasmonicwaveguides are summarized, and the properties and physical mechanisms of plasmonic waveguides are presented in detail. Then, the applications of plasmonic waveguides including remote excitation fl uorescence and SERS areintroduced, and we focus on the fi eld of remote-excitation surface catalytic reactions. Finally, forecasts are made for possible future applications for the remote-excitation surface catalysis by plasmonic waveguides in living cells.
Co-author:
Zhenglong Zhang; Yurui Fang; Wenhui Wang; Li Chen; *Mengtao Sun
Volume:
3
Page Number:
1500215
Translation or Not:
No
Date of Publication:
2015-10-28