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Copper-based disordered plasmonic system with dense nanoisland morphology

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arxiv 2411.01206 v2 pith:TRPXEVIV submitted 2024-11-02 physics.app-ph physics.optics

Copper-based disordered plasmonic system with dense nanoisland morphology

classification physics.app-ph physics.optics
keywords disorderedplasmonicsystemapplicationsphotocatalysisphotochemistryspectroscopyversatile
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Dry synthesis is a highly versatile method for the fabrication of nanoporous metal films, since it enables easy and reproducible deposition of single or multi-layer(s) of nanostructured materials that can find intriguing applications in plasmonics, photochemistry and photocatalysis, to name a few. Here, we extend the use of this methodology to the preparation of copper nanoislands that represent an affordable and versatile example of disordered plasmonic substrate. We perform detailed characterizations of the system using several techniques such as spectroscopic ellipsometry, cathodoluminescence, electron energy loss spectroscopy, ultrafast pump-probe spectroscopy and second-harmonic generation with the aim to investigate the optical properties of these systems in an unprecedented systematic way. Our study represents the starting point for future applications of this new disordered plasmonic system ranging from sensing to photochemistry and photocatalysis.

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