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Molecular-enabled lithium-locking for stable sorption-based atmospheric water harvesting
Energy Environ. Sci., 2025, 18,8077-8087DOI: 10.1039/D5EE02335A, Paper Yating Ji, Weifeng Yang, Xiaoyan Li, Jie Wang, Chengcheng Li, Jinping Zhang, Bi Xu, Charles Q. Jia, Zaisheng CaiA molecular-enabled lithium-locking strategy is reported to solve lithium chloride leakage in atmospheric water harvesting. Owing to this strategy, ultra-sponge maintains a high water absorption rate of 1.75 g g−1
Microscale homogeneous refinement of CaO/Ca(OH)2 particles for enhancing thermochemical energy storage performance
J. Mater. Chem. A, 2025, 13,27336-27348DOI: 10.1039/D5TA02746B, Paper Guangyao Zhao, Zhehui Zhao, Sixing Zhang, Jiakang Yao, Na Cheng, Zhen Li, Yu Han, Xiaotao ZhangThe “dynamic” doping of Ca(OH)2 with C3N4 was introduced to optimize the microstructure of particles, which enhanced thermal performance, elevated conversion rate, and improved cycling stability in related thermochemical energy storage technology.The
A bio-inspired thermo-responsive hydrogel purifier for effective water harvesting in seawater
J. Mater. Chem. A, 2025, Advance ArticleDOI: 10.1039/D5TA04916D, Paper Yang Xiao, Yanqiong Bao, Lang Liu, Wanlin Xu, Da Li, Xiong Zheng, Guangzhao Qin, Qing LiSolar desalination technology has garnered considerable attention due to its eco-friendliness, sustainability, and cost-efficiency; however, its practical application is impeded by the drawback of low water yield.To cite this article before
Tandem Atmospheric Water Harvesting and Passive Cooling Enabled by Hygroscopic Biopolymer‐Based Aerogels
Advanced Functional Materials, Volume 35, Issue 31, August 1, 2025.
Biomass‐Derived Hydro‐Sponge for Ultra‐Efficient Atmospheric Water Harvesting
Advanced Functional Materials, Volume 35, Issue 33, August 14, 2025.