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Fibrous Aerogels with Tunable Superwettability for High-Performance Solar-Driven Interfacial Evaporation 被引量:6

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摘要 Solar-driven interfacial evaporation is an emerging technology for water desalination.Generally,double-layered structure with separate surface wettability properties is usually employed for evaporator construction.However,creating materials with tunable properties is a great challenge because the wettability of existing materials is usually monotonous.Herein,we report vinyltrimethoxysilane as a single molecular unit to hybrid with bacterial cellulose(BC)fibrous network,which can be built into robust aerogel with entirely distinct wettability through controlling assembly pathways.Siloxane groups or carbon atoms are exposed on the surface of BC nanofibers,resulting in either superhydrophilic or superhydrophobic aerogels.With this special property,single component-modified aerogels could be integrated into a double-layered evaporator for water desalination.Under 1 sun,our evaporator achieves high water evaporation rates of 1.91 and 4.20 kg m^(-2)h^(-1)under laboratory and outdoor solar conditions,respectively.Moreover,this aerogel evaporator shows unprecedented lightweight,structural robustness,long-term stability under extreme conditions,and excellent salt-resistance,highlighting the advantages in synthesis of aerogel materials from the single molecular unit.
出处 《Nano-Micro Letters》 SCIE EI CAS CSCD 2023年第5期51-68,共18页 纳微快报(英文版)
基金 supported by the National Key Research and Development Program of China(2021YFB3701603) National Science Foundation of China(51973030,52103075) Shanghai Rising-Star Program(20QA1400100) Science and Technology Commission of Shanghai Municipality(20JC1414900) China Postdoctoral Science Foundation(2022M710664,2022T150111) China Postdoctoral Science Foundation(2022M710663) the Fundamental Research Funds for the Central Universities “DHU”Distinguished Young Professor Program(LZB2021001) State Key Laboratory for Modification of Chemical Fibers and Polymer Materials,Donghua University。
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