HOT-ELECTRONS

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Unveiling multimodal hot carrier excitation in plasmonic bimetallic Au@Ag nanostars for photochemistry and SERS sensing
《Nano Research》2024年第12期10355-10362,共8页Yoel Negrín-Montecelo Amir Elsaidy Jesús Giráldez-Martínez Enrique Carbó-Argibay Zhiming Wang Alexander O.Govorov Ramon A.Alvarez-Puebla Miguel A.Correa-Duarte Lucas V.Besteiro 
supported by the projects PID2020-120306RB-I00,PID2020-118282RA-I00,PID2020-113704RB-I00;TED2021-130038A-I00,TED2021-132101B-I00,RYC2021-033818-I,PDC2021-121787-I00,and FPU21/03137,funded by MCIN/AEI/10.13039/501100011033 and European Union“NextGenerationEU”/PRTR;ED431C 2022/24 funded by Xunta de Galicia;2020SGR00166 funded by Generalitat de Cataluña;2021PFR-URV-B2-02 funded by Universitat Rovira i Virgili;HORIZON-EIC-2022-PATHFINDERCHALLENGES-01-06(No.101115149);HORIZON-HLTH-2022-DISEASE-06-TWOSTAGE(No.101080889);funded by the European Union Horizon 2020 Research and Innovation Program。
Plasmonic nanostructures stand at the forefront of nanophotonics research,particularly in sensing and energy conversion applications.Their unique ability to confine light energy at the nanoscale makes them indispensab...
关键词:HOT-ELECTRONS field enhancement NANOHYBRIDS photocatalysis surface-enhanced Raman scattering(SERS) PLASMONICS 
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