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一种具有极高水蒸气吸附量的聚两性离子@金属有机框架水凝胶,用于高效大气取水。

A Polyzwitterionic@MOF Hydrogel with Exceptionally High Water Vapor Uptake for Efficient Atmospheric Water Harvesting.

作者信息

Yan Jian, Li Wenjia, Yu Yingyin, Huang Guangyu, Peng Junjie, Lv Daofei, Chen Xin, Wang Xun, Liu Zewei

机构信息

School of Environment and Chemical Engineering, Foshan University, Foshan 528000, China.

出版信息

Molecules. 2024 Apr 18;29(8):1851. doi: 10.3390/molecules29081851.

Abstract

Atmospheric water harvesting (AWH) is considered a promising strategy for sustainable freshwater production in landlocked and arid regions. Hygroscopic salt-based composite sorbents have attracted widespread attention for their water harvesting performance, but suffer from aggregation and leakage issues due to the salting-out effect. In this study, we synthesized a PML hydrogel composite by incorporating zwitterionic hydrogel (PDMAPS) and MIL-101(Cr) as a host for LiCl. The PML hydrogel was characterized using various techniques including X-ray diffraction (XRD), scanning electron microscopy (SEM), Fourier transform infrared (FTIR), and thermogravimetric analysis (TGA). The swelling properties and water vapor adsorption-desorption properties of the PML hydrogel were also assessed. The results demonstrate that the MIL-101(Cr) was uniformly embedded into PDMAP hydrogel, and the PML hydrogel exhibits a swelling ratio of 2.29 due to the salting-in behavior. The PML hydrogel exhibited exceptional water vapor sorption capacity of 0.614 g/g at 298 K, RH = 40% and 1.827 g/g at 298 K, RH = 90%. It reached 80% of its saturated adsorption capacity within 117 and 149 min at 298 K, RH = 30% and 90%, respectively. Additionally, the PML hydrogel showed excellent reversibility in terms of water vapor adsorption after ten consecutive cycles of adsorption-desorption. The remarkable adsorption capacity, favorable adsorption-desorption rate, and regeneration stability make the PML hydrogel a potential candidate for AWH. This polymer-MOF synergistic strategy for immobilization of LiCl in this work offers new insights into designing advanced materials for AWH.

摘要

大气水收集(AWH)被认为是在内陆和干旱地区实现可持续淡水生产的一种有前景的策略。基于吸湿盐的复合吸附剂因其集水性能而受到广泛关注,但由于盐析效应存在聚集和泄漏问题。在本研究中,我们通过引入两性离子水凝胶(PDMAPS)和作为LiCl载体的MIL-101(Cr)合成了一种PML水凝胶复合材料。使用包括X射线衍射(XRD)、扫描电子显微镜(SEM)、傅里叶变换红外光谱(FTIR)和热重分析(TGA)等多种技术对PML水凝胶进行了表征。还评估了PML水凝胶的溶胀性能和水蒸气吸附 - 解吸性能。结果表明,MIL-101(Cr)均匀地嵌入到PDMAP水凝胶中,并且由于盐溶行为,PML水凝胶的溶胀率为2.29。PML水凝胶在298 K、RH = 40%时表现出0.614 g/g的优异水蒸气吸附容量,在298 K、RH = 90%时为1.827 g/g。在298 K、RH = 30%和90%时,它分别在117分钟和149分钟内达到其饱和吸附容量的80%。此外,在连续十次吸附 - 解吸循环后,PML水凝胶在水蒸气吸附方面表现出优异的可逆性。出色的吸附容量、良好的吸附 - 解吸速率和再生稳定性使PML水凝胶成为AWH的潜在候选材料。本工作中这种用于固定LiCl的聚合物 - 金属有机框架协同策略为设计用于AWH的先进材料提供了新的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc66/11054390/6daabb639ff3/molecules-29-01851-g001.jpg

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