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Dual-Ligand Metal-Organic Frameworks via In Situ Amidoxime Engineering for Selective Ion Separation

delete2025-12-12
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OA
AI
Z
Zhifang Lv
范桂侠 (Guixia Fan)
Y
Yun Bai
李国胜 cover
李国胜 (Guosheng Li)
李彭 cover
李彭 (Peng Li)
W
Wenjihao Hu
曹亦俊 cover
曹亦俊 (Yijun Cao)
杨闻帅 (Wenshuai Yang) *
滕道光 cover
滕道光 (Daoguang Teng) *
H
Hongbo Zeng *
DOI:10.1002/adfm.202526751delete
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Abstract

Abstract

En 中文
Metal-organic frameworks (MOFs) are attractive candidates for ion extraction due to their ordered porous architectures. However, their inert surfaces with few binding sites limit their use in selective ion separation. Herein, inspired by the dual-ligand coordination of oxime groups in biological carriers, a precise in situ amidoxime surface functionalization strategy (MOFs-AO) is reported that preserves MOFs architecture while enabling high-density controlled functionalization of amidoxime moieties for selective Ga(III) extraction. Density functional theory (DFT) calculations and molecular force measurements reveal that, unlike conventional monodentate with low electron density, amidoxime groups provide reinforced interactions with Ga(III) through spatially optimized N,O dual-ligand coordination configuration. As a result, MOFs-AO achieve a Ga(III) capacity of 205.13 mg g−1 and a Ga(III)/V(V) ratio exceeding 7.0 in challenging Bayer liquor, nearly one order of magnitude higher than comparable materials. When integrated into a polymeric network, the MOFs-AO form a flow-through reactor exhibiting high water flux (>1250 L m−2 h−1) and continuous Ga(III) recovery efficiency above 90% through successive in situ adsorption–desorption cycles. This work demonstrates a robust and generalizable surface-engineering strategy for MOFs functionalization, advancing sustainable and selective ion separation.
Keywords:
dual-ligand coordination
Ion separation
MOFs materials
surface engineering
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Journal

Advanced Functional Materials cover
Advanced Functional Materials
IF:
19
Papers:
3.4W
Citations:
32.1W

Organization

C
Central South University
Scholars:
10.0W
Papers: 7.2W
Citations: 10.9W
Z
Zhengzhou University
Scholars:
6.8W
Papers: 4.4W
Citations: 8.5W
U
university of alberta
Scholars:
5.0W
Papers: 4.9W
Citations: 65
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