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Smart Strategies for Light and Thermal Management in High-Efficiency Solar Steam Generation

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Shape-controlled fabrication of MnO/C hybrid nanoparticle from waste polyester for solar evaporation and thermoelectricity generation

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Summary: This study demonstrates the construction of flexible MnO/C nanoparticle-based solar evaporators for simultaneous interfacial solar evaporation and thermo-electricity generation. The solar evaporator exhibits high evaporation rate and solar-to-vapor conversion efficiency, and can recover low-grade heat for thermoelectric conversion when integrated with a thermoelectric module.

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Over 11 kg m-2 h-1 Evaporation Rate Achieved by Cooling Metal-Organic Framework Foam with Pine Needle-Like Hierarchical Structures to Subambient Temperature

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Tailoring the Salt Transport Flux of Solar Evaporators for a Highly Effective Salt-Resistant Desalination with High Productivity

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Integrated Water and Thermal Managements in Bioinspired Hierarchical MXene Aerogels for Highly Efficient Solar-Powered Water Evaporation

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Reshapable MXene/Graphene Oxide/Polyaniline Plastic Hybrids with Patternable Surfaces for Highly Efficient Solar-Driven Water Purification

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Evaporation rate far beyond the input solar energy limit enabled by introducing convective flow

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Achieving steam and electrical power from solar energy by MoS2-based composites

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Nature Inspired MXene-Decorated 3D Honeycomb-Fabric Architectures Toward Efficient Water Desalination and Salt Harvesting

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