Molecular-enabled Lithium-locking for Stable Sorption-based Atmospheric Water Harvesting

Abstract

Sorption-based atmospheric water harvesting (SAWH) is a sustainable technology for freshwater supply. Lithium chloride (LiCl) is a widely used adsorbent in SAWH. However, lithium leakage occurs frequently due to the weak binding force between LiCl and the substrate, resulting in poor stability of the SAWH system. Here, a molecular-enabled lithium-locking sponge (Ultra-sponge) is developed for atmospheric water harvesting. Specifically, polyethylene oxide (PEO) is introduced onto the substrate to establish a robust multidentate coordination with lithium ions (Li⁺) to achieve the fixation of Li⁺. In comparison, the binding energy is significantly increased by 50%. Thanks to the lithium-locking strategy, the Ultra-sponge maintains a high water absorption rate of 1.75 g g-1 (25 ℃, 70% RH) even after 100 cycles, making it one of the most stable materials in the cutting-edge field of SAWH. Furthermore, outdoor experiments have demonstrated the potential applicability of Ultra-sponge in agricultural irrigation, achieving an average water-saving effect of 43.2%. The molecular-enabled lithium-locking strategy successfully addresses the longstanding issue of lithium leakage and offers innovative insights for the development of next-generation materials in SAWH.

Supplementary files

Article information

Article type
Paper
Submitted
28 Apr 2025
Accepted
08 Jul 2025
First published
10 Jul 2025

Energy Environ. Sci., 2025, Accepted Manuscript

Molecular-enabled Lithium-locking for Stable Sorption-based Atmospheric Water Harvesting

Y. Ji, W. Yang, X. Li, J. Wang, C. Li, J. Zhang, B. Xu, C. Q. Jia and Z. Cai, Energy Environ. Sci., 2025, Accepted Manuscript , DOI: 10.1039/D5EE02335A

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