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February 25, 2026Nanoscale0 citationsOpen Access

Laser Writing of Plasmonic Catalytic Microchannels on UiO-66 layer

AGAlina GorbunovaUniversity of ViennaSSSwagato SarkarHelmholtz-Zentrum Dresden-RossendorfDKDmitry KogolevNational Research Tomsk State University

Key Points

  • The research aims to enhance solar-to-chemical energy conversion by developing a scalable method for plasmon-assisted catalysis.
  • Utilized laser writing techniques to create microchannels on UiO-66 layers.
  • Evaluated the stability of plasmonic nanoparticles within the created microchannels.
  • Assessed the efficiency of solar-to-chemical energy conversion using the new system.
  • Demonstrated successful fabrication of stable plasmonic catalytic microchannels.
  • Showed improved nanoparticle stability compared to traditional methods.
  • Achieved effective solar-to-chemical energy conversion within the system.

Abstract

Plasmon-assisted catalysis offers an attractive route for solar-to-chemical energy conversion, yet its practical integration into scalable flow systems remains limited by complex fabrication steps and poor nanoparticle stability. Here, we...

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Cite This Study

Gorbunova et al. (2026) studied this question.

synapsesocial.com/papers/699e9152f5123be5ed04ec48https://doi.org/10.1039/d5nr05068e
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