砷酸盐
化学
砷
选择性
亚砷酸盐
共价键
螯合作用
吸附
硫醇
组合化学
立体化学
合理设计
角鲨胺
计算化学
分子
纳米技术
悬空债券
作者
Timo M. O. Felder,Till Schertenleib,Beatriz Mouriño,Dragos Stoian,Nazanin Taheri,Laura Piveteau,Wei Shi,Emad Oveisi,Wendy L. Queen
出处
期刊:Angewandte Chemie
[Wiley]
日期:2025-09-28
卷期号:64 (48): e202516822-e202516822
被引量:2
标识
DOI:10.1002/anie.202516822
摘要
containing As(V)) species in the presence of competing ions. Here, we present a transformative solution using dimercaptosuccinic acid (DMSA) ligands to construct two topologically distinct Zr-MOFs. The Zr-DMSA framework with fcu topology demonstrates exceptional capture of both arsenic species, even in the presence of phosphates, which normally compete for adsorption sites. Through comprehensive structural analysis combining PDF analysis, XAS, and solid-state NMR, we uncover the molecular basis for this superior performance. Comparative studies with analogous thiol-free Zr-MOFs reveal that DMSA's thiol groups enable strong covalent sulfur-arsenic interactions. Moreover, DFT calculations and XAS analysis illuminate an unexpected mechanism: dangling or flexible DMSA ligands enhance As(III) chelation through rotational freedom that enables effective As-S bond formation. The remarkable selectivity for arsenate over phosphate likely stems from arsenate's reduction potential, enabling its conversion to As(III) during thiol chelation. This work not only addresses a pressing environmental challenge but also establishes how particle size effects and/or structural disorder, rather than perfect crystallinity, may dramatically enhance MOF performance for selective guest capture.
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