English

CO$_2$ Conversion in Cu-Pd based Disordered Network Metamaterials with Ultra-Small Mode Volume

Optics 2024-10-31 v1 Applied Physics

Abstract

Plasmons can drive chemical reactions by directly exciting intramolecular transitions. However, strong coupling of plasmons to single molecules remains a challenge as ultra-small mode volumes are required. In the presented work, we propose Cu-Pd plasmonic network metamaterials as a scalable platform for plasmon-assisted catalysis. Due to the absence of translational symmetry, these networks provide a unique plasmonic environment featuring a large local density of optical states and an unparalleled density of hotspots that effectively localizes light in mode volumes V<81024V<8\cdot10^{-24} m3^3. Catalytic performance tests during CO2_2 conversion reveal production rates of up to 4.3\cdot102^2 mmol g1^{-1}h1^{-1} and altered reaction selectivity under light illumination. Importantly, we show that the selectivity of the catalytic process can be tuned by modifying the network's chemical composition, offering a versatile approach to optimize reaction pathways.

Keywords

Cite

@article{arxiv.2410.22986,
  title  = {CO$_2$ Conversion in Cu-Pd based Disordered Network Metamaterials with Ultra-Small Mode Volume},
  author = {Jelena Wohlwend and Oliver Wipf and David Kiwic and Siro Käch and Benjamin Mächler and Georg Haberfehlner and Ralph Spolenak and Henning Galinski},
  journal= {arXiv preprint arXiv:2410.22986},
  year   = {2024}
}
R2 v1 2026-06-28T19:41:08.318Z