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Unified Treatment for Plasmon-Exciton Co-driven Reduction and Oxidation Reactions.

Weihua LinYaqian CaoPeijie WangMengtao Sun
Published in: Langmuir : the ACS journal of surfaces and colloids (2017)
Revealing the nature of plasmon-exciton co-driven surface catalytic reactions is important and urgent for developing potential applications in energy and environmental science. In this work, we propose a mechanism for plasmon-exciton co-driven surface catalytic reactions based on our experimental results. We provide a method for a unified treatment for reduction and oxidation reactions, which not only strongly supports our proposed mechanism but also promotes a deeper understanding of plasmon-exciton co-driven surface catalytic reactions.
Keyphrases
  • energy transfer
  • public health
  • hydrogen peroxide
  • risk assessment
  • crystal structure
  • climate change
  • smoking cessation