4.7 Review

Progress in thermoplasmonics for solar energy applications

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Summary: This study compares the thermoplasmonic response of different nanoparticle geometries and finds that doughnut-shaped nanoparticles have a superior tunable photothermal response under practical illumination conditions. The heating of nanoparticles in fluidic environments strongly depends on the particle orientation with respect to the illumination source. It is concluded that nanodoughnuts are the best nanoheaters with weak dependence on orientation, making them ideal for photothermal therapy applications.

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Summary: This review discusses the integration of plasmonic and dielectric metasurfaces with emissive or stimuli-responsive materials, enabling control of light-matter interactions at the nanoscale. Metasurfaces offer the ability to manipulate electromagnetic waves at the subwavelength level, while the combination with nanoscale emitters allows for enhanced photoluminescence, nanoscale lasing, controlled quantum emission, and formation of exciton-polaritons. Additionally, the use of functional materials that respond to external stimuli enables the engineering of tunable nanophotonic devices. Emerging metasurface designs, such as surface-functionalized, chemically tunable, and multilayer hybrid metasurfaces, hold promise for various applications including photocatalysis, sensing, displays, and quantum information.

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Summary: Liquid thermoelectricity involves redistributing ions in an electrolytic solution under temperature gradients to form electric fields, which can manipulate colloidal particles. By utilizing laser interaction and absorbing nanostructures, optothermoelectrics can manage heat on micro and nanoscales to trap, manipulate, and pull particles with low optical power, showing great potential in microswimmers and nanoscience.

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Photoactive Antiviral Face Mask with Self-Sterilization and Reusability

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Min Guo et al.

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