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Mechanism for plasmon-generated solvated electrons.

Alexander Al-ZubeidiBehnaz OstovarClaire C CarlinBoxi Cam LiStephen A LeeWei-Yi ChiangNiklas GrossSukanya DuttaAnastasiia MisiuraEmily K SearlesAmrita ChakrabortySean T RobertsJennifer A DionnePeter J RosskyChristy F LandesStephan Link
Published in: Proceedings of the National Academy of Sciences of the United States of America (2023)
Solvated electrons are powerful reducing agents capable of driving some of the most energetically expensive reduction reactions. Their generation under mild and sustainable conditions remains challenging though. Using near-ultraviolet irradiation under low-intensity one-photon conditions coupled with electrochemical and optical detection, we show that the yield of solvated electrons in water is increased more than 10 times for nanoparticle-decorated electrodes compared to smooth silver electrodes. Based on the simulations of electric fields and hot carrier distributions, we determine that hot electrons generated by plasmons are injected into water to form solvated electrons. Both yield enhancement and hot carrier production spectrally follow the plasmonic near-field. The ability to enhance solvated electron yields in a controlled manner by tailoring nanoparticle plasmons opens up a promising strategy for exploiting solvated electrons in chemical reactions.
Keyphrases
  • gold nanoparticles
  • reduced graphene oxide
  • label free
  • molecular dynamics
  • single molecule
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  • high speed
  • living cells