Highly Salt-Resistant and Efficient Dynamic Janus Absorber Based on Thermo-Responsive Hydroxypropyl Cellulose

杰纳斯 材料科学 盐(化学) 纤维素 羟丙基纤维素 化学工程 纳米技术 复合材料 聚合物 化学 有机化学 工程类
作者
Jianfeng Gu,Zhaohui Luan,Xinmin Zhang,Huihui Wang,Xu Cai,Weiqing Zhan,Xinyi Ji,Jiajie Liang
出处
期刊:Materials horizons [The Royal Society of Chemistry]
标识
DOI:10.1039/d4mh01699h
摘要

Recent advances in interfacial solar steam generation have made direct solar desalination a promising approach for providing cost-effective and environmentally friendly clean water solutions. However, developing highly effective, salt-resistant solar absorbers for long-term desalination at high efficiencies and evaporation rates remains a significant challenge. We present a Janus hydrogel-based absorber featuring a surface modified with thermo-responsive hydroxypropyl cellulose (HPC) and a hydrogel matrix containing photothermal conversion units, MXene, specifically designed for long-term seawater desalination. At the lower critical solution temperature, HPC undergoes phase separation, which results in the formation of a rough hydrophobic surface. This process creates a Janus evaporator structure that exhibits a high evaporation rate, excellent salt resistance, and long-term stability. Consequently, the hydrogel absorbers achieve an impressive evaporation rate (3.11 kg m-2 h-1) under one-sun irradiation. Salt residues are deposited only at the edges of the super-hydrophilic bottom. This process ensures long-term evaporator stability for continuous solar evaporation (>30 hours) in simulated seawater at an average evaporation rate of ∼2.58 kg m-2 h-1. With its unique structural design, achieved via a straightforward design process, the flexible Janus absorber serves as an efficient, salt-resistant, and stable solar steam generator for direct solar desalination.
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