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plasmonic transfer channels. Metal oxides have demonstrated immense application potential in fields such as chemical sensing, photovoltaics, photodegradation, photocatalytic materials, water photolysis, and
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This PhD project investigates ultrafast optical switching in plasmonic nanogaps, leveraging their exceptional ability to confine electromagnetic fields into sub-nanometer volumes [1-6]. Plasmonic
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engineering programs and master's programs. More information is available on our website . This PhD project focuses on the development of plasmon-driven photoelectrocatalytic platforms for proton-coupled
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When light illuminates nano-sized metallic structures, the free electrons in the metal collectively oscillate, creating `plasmons'. By specifically designing the geometry and arrangement of the nano
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actuators, the work will explore how DNA-based tiles can buckle between defined mechanical states and how these transitions can be detected via plasmonic and optical coupling. The project aims to establish
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, nanofabrication and data analysis) post-doctoral fellowship aims at studying the non-linear optical properties of a new type of integrated plasmonic logic gate devices. The research work will consist in integrating
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meets plasmonics: New perspectives in photocatalysis and near-surface (www.cplas.org ) —a collaboration between King’s College London, Imperial College London and UK Catalysis Hub. The research in
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London, funded by the EPSRC Programme Grant Catalysis meets plasmonics: New perspectives in photocatalysis and near-surface (www.cplas.org ) —a collaboration between King’s College London, Imperial College
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Well Infrared Photodetectors (QWIP): The objective is to use CdO plasmonic nanostructures with resonances in the mid-infrared range, which allow near-field enhancement, integrate them onto QWIPs, and
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About us The research in Photonics & Nanotechnology Group ( https://www.kcl.ac.uk/research/photonics-nanotechnology ) involves the development and applications of advanced photonic technologies and