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- W4200433183 startingPage "7552" @default.
- W4200433183 abstract "Solar energy is a green and sustainable clean energy source. Its rational use can alleviate the energy crisis and environmental pollution. Directly converting solar energy into heat energy is the most efficient method among all solar conversion strategies. Recently, various environmental and energy applications based on nanostructured photothermal materials stimulated the re-examination of the interfacial solar energy conversion process. The design of photothermal nanomaterials is demonstrated to be critical to promote the solar-to-heat energy conversion and the following physical and chemical processes. This review introduces the latest photothermal nanomaterials and their nanostructure modulation strategies for environmental (seawater evaporation) and catalytic (C1 conversion) applications. We present the research progress of photothermal seawater evaporation based on two-dimensional and three-dimensional porous materials. Then, we describe the progress of photothermal catalysis based on layered double hydroxide derived nanostructures, hydroxylated indium oxide nanostructures, and metal plasmonic nanostructures. Finally, we present our insights concerning the future development of this field." @default.
- W4200433183 created "2021-12-31" @default.
- W4200433183 creator A5035720657 @default.
- W4200433183 creator A5042712935 @default.
- W4200433183 creator A5068950543 @default.
- W4200433183 date "2021-12-13" @default.
- W4200433183 modified "2023-10-12" @default.
- W4200433183 title "Nanostructured Photothermal Materials for Environmental and Catalytic Applications" @default.
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