3D Janus structure MXene/cellulose nanofibers/luffa aerogels with superb mechanical strength and high-efficiency desalination for solar-driven interfacial evaporation

被引:60
|
作者
Wang, Pei -Lin [1 ]
Zhang, Wei [1 ]
Yuan, Qi [1 ]
Mai, Tian [1 ]
Qi, Meng -Yu [1 ]
Ma, Ming-Guo [1 ]
机构
[1] Beijing Forestry Univ, Coll Mat Sci & Technol, MOE Engn Res Ctr Forestry Biomass Mat & Bioenergy, Res Ctr Biomass Clean Utilizat, Beijing 100083, Peoples R China
基金
国家重点研发计划;
关键词
Aerogels; Cellulose nanofibers; Ti 3 C 2 T x MXene; Janus structure; Interface water evaporation; Photothermal conversion; LUFFA-CYLINDRICA; SPONGE; NANOSHEETS; ROBUST; TI3C2; ARCHITECTURES; LIGHTWEIGHT; GENERATION; TRANSPORT;
D O I
10.1016/j.jcis.2023.04.081
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Interfacial solar steam generation (ISSG) is considered to be an attractive technique to address the water shortage. However, developing a sustainable thermal management, salt rejection, and excellent mechanical strength ISSG device for long-term stability desalination is still a challenge. Herein, a biomass ISSG device with superb mechanical properties was prepared by introducing a luffa sponge as the skeleton and constructing the MXene/cellulose nanofibers (CNFs) aerogels via freeze-drying. The Janus MXene-decorated CNFs/luffa (JMCL) aerogels integrated the multifunction of fast water transport, good thermal management, and efficient photo -thermal conversion in a single module, to achieve high-efficiency desalination. 3D Janus structure endowed the JMCL aerogel with opposite wettability, which is feasible to construct the localized photothermal generation and self-floating. The mechanical strength of JMCL aerogels is 437 times that of MXene/CNFs aerogels. The JMCL aerogels delivered a water evaporation rate of 1.40 kg m -2h- 1 and an efficiency of 91.20% under 1 sun illu-mination. The excellent salt resistance during 24 h working and long-term solar vapor generation of up to 28 days were achieved. The multifunctional JMCL aerogels with 3D Janus structure offer new insights for devel-oping good durability and eco-friendly biopolymer-based steam generators.
引用
收藏
页码:306 / 318
页数:13
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