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具有高度带电亚1纳米通道的亚胺连接3D共价有机框架膜,用于卓越的锂离子筛分

Imine-Linked 3D Covalent Organic Framework Membrane Featuring Highly Charged Sub-1 nm Channels for Exceptional Lithium-Ion Sieving.

作者信息

Wu Tong, Qian Yijun, Zhu Zebin, Yu Weihao, Zhang Lifang, Liu Jie, Shen Xiaowei, Zhou Xi, Qian Tao, Yan Chenglin

机构信息

College of Energy, Key Laboratory of Core Technology of High Specific Energy Battery and Key Materials for Petroleum and Chemical Industry, Soochow University, Suzhou, 215006, China.

School of Chemistry and Chemical Engineering, Nantong University, Nantong, 226019, China.

出版信息

Adv Mater. 2025 Feb;37(8):e2415509. doi: 10.1002/adma.202415509. Epub 2025 Jan 9.

Abstract

Coupling ion exclusion and interaction screening within sub-nanoconfinement channels in novel porous material membranes hold great potential to realize highly efficient ion sieving, particularly for high-performance lithium-ion extraction. Diverse kinds of advanced membranes have been previously reported to realize this goal but with moderate performance and complex operations gained. Herein, these issues are circumvented by preparing the consecutive and intact imine-linked three-dimensional covalent organic framework (i.e., COF-300) membranes via a simple solvothermal approach and employing the intrinsically interconnected sub-1 nm one-dimensional channels for exceptional lithium-ion sieving. The synthesized membranes with highly charged angstrom scale channels of ≈0.78 nm achieve an excellent Li permeance (0.123 mol m h) with an ultrahigh Li/Mg of 36 in the binary system. The experimental measurement and theoretical calculation reveal that a channel size right exactly between Li and Mg enables restricted Mg penetration. Meanwhile, the ion affinity interaction screening with imine groups further strengthens the fast Li permeability but severely suppresses the Mg passage. In particular, the synthesized three-dimensional covalent organic framwork membranes also have a remarkable separation performance during a long-term operation test without sacrificing trade-off, demonstrating chemistry stability and mechanical integrity under the high-salinity aqueous environment.

摘要

在新型多孔材料膜的亚纳米限制通道内耦合离子排斥和相互作用筛选,对于实现高效离子筛分具有巨大潜力,特别是在高性能锂离子提取方面。此前已报道了多种先进膜来实现这一目标,但性能中等且操作复杂。在此,通过简单的溶剂热法制备连续且完整的亚胺连接三维共价有机框架(即COF-300)膜,并利用本质上相互连接的亚1纳米一维通道实现卓越的锂离子筛分,从而规避了这些问题。合成的具有约0.78纳米高电荷埃尺度通道的膜,在二元体系中实现了出色的锂渗透率(0.123 mol m⁻² h⁻¹)以及36的超高锂/镁选择性。实验测量和理论计算表明,通道尺寸恰好在锂和镁之间,可限制镁的渗透。同时,与亚胺基团的离子亲和相互作用筛选进一步增强了锂的快速渗透性,但严重抑制了镁的通过。特别地,合成的三维共价有机框架膜在长期运行测试中也具有显著的分离性能,且不牺牲权衡,在高盐度水环境下表现出化学稳定性和机械完整性。

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