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Plasmonic catalysis has been a rapidly growing research area since the 2010s. Based on the confinement of light within metallic nanoparticles, it holds great promises for the development of sustainable
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the organization of water molecules on the selective adsorption of metabolites depending on their physico-chemical properties. Simulation results will be assessed by experimental surface plasmon resonance (SPR
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to join our plasmonics and photophysics team and work at the interface of nanophotonics and energy-related applications. Key challenges in solar energy harvesting and photocatalysis stem from limited
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photochemistry is limited by how optical energy dissipates at the nanoscale. In plasmonic nanostructures, excitation produces both energetic charge carriers and significant heat, often degrading device performance