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- W4313550131 endingPage "119985" @default.
- W4313550131 startingPage "119985" @default.
- W4313550131 abstract "Solar-driven interfacial evaporation (SDIE) is considered one of the most promising technological approaches to solve the freshwater shortages. Based on renewable wood, we fabricated the nanowood loaded with reduced graphene oxide ([email protected]) with high SDIE performance. Its superior performance benefits from three aspects: Firstly, the cellulose network in nanowood treated by delignification contains many hydrophilic groups, which significantly improves the hydrophilicity and can combine with water molecules through hydrogen bonds to generate more activated water, thereby reducing the enthalpy of evaporation. Secondly, the photothermal conversion capability of [email protected] was significantly improved by loading RGO with an impregnation-reduction method. Finally, the 2D water supply strategy achieves an ideal balance of water transport and thermal management and controls the water content within the pore channels to expose more evaporation space. Under simulated sunlight (1.0 kW m−2), the evaporation rate and evaporation efficiency of [email protected] were 2.26 kg m−2h−1 and 92.71 %, respectively. In the outdoor experiment, the daily freshwater production of 6.39 kg m−2 was obtained on sunny days. Furthermore, the hydroelectric effect of [email protected] under solar-driven evaporation proved its potential for power generation applications." @default.
- W4313550131 created "2023-01-06" @default.
- W4313550131 creator A5022275027 @default.
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- W4313550131 creator A5066267469 @default.
- W4313550131 creator A5085511442 @default.
- W4313550131 date "2023-03-01" @default.
- W4313550131 modified "2023-10-15" @default.
- W4313550131 title "Reduced graphene oxide composite nanowood for solar-driven interfacial evaporation and electricity generation" @default.
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- W4313550131 doi "https://doi.org/10.1016/j.applthermaleng.2023.119985" @default.
- W4313550131 hasPublicationYear "2023" @default.
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