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一种用于快速高效吸附芥子气模拟物的含柱[5]芳烃金属有机框架材料。

A Pillar[5]arene-Containing Metal-Organic Framework for Rapid and Highly Capable Adsorption of a Mustard Gas Simulant.

作者信息

Wang Zeju, Wu Yitao, Zhang Zhenguo, Sheng Xinru, Fang Shuai, Liu Yang, Gong Yide, Wang Mengbin, Song Nan, Huang Feihe

机构信息

Stoddart Institute of Molecular Science, Department of Chemistry, Zhejiang University, Hangzhou 310058, P. R. China.

Zhejiang-Israel Joint Laboratory of Self-Assembling Functional Materials, ZJU-Hangzhou Global Scientific and Technological Innovation Center, Zhejiang University, Hangzhou 311215, P. R. China.

出版信息

J Am Chem Soc. 2024 Aug 21;146(33):23330-23337. doi: 10.1021/jacs.4c06061. Epub 2024 Aug 7.

Abstract

Mustard gas causes irreversible damage upon inhalation or contact with the human body. Consequently, the development of adsorbents for effective interception of mustard gas at low concentrations and high flow rates is an urgent necessity. Here we report a stable porous pillar[5]arene-containing metal-organic framework (MOF) based on zirconium (-Zr-), demonstrating that embedding pillar[5]arene units in MOFs can provide specific binding sites for efficient adsorption of a mustard gas simulant, 2-chloroethyl ethyl sulfide (CEES). -Zr- achieves a higher capacity and more rapid adsorption compared to its counterpart without embedded pillar[5]arene units (-Zr-) and perethylated pillar[5]arene () alone. Single crystal X-ray diffraction and solid-state nuclear magnetic resonance reveal that the enhanced performance of -Zr- is derived from the host-guest complexation between CEES and pillar[5]arene moieties. Moreover, breakthrough experiments confirmed that the interception performance of -Zr- against CEES (800 ppm, 120 mL/min) was significantly improved (566 min/g) compared with -Zr- (353 min/g) and (0.873 min/g), attributed to the integration of open channels with specific recognition sites. This work marks a significant advancement in the development of macrocycle-incorporated crystalline framework materials with recognition sites for the efficient capture of guest molecules.

摘要

芥子气一旦被人体吸入或接触,就会造成不可逆的损害。因此,迫切需要开发能够在低浓度和高流速下有效拦截芥子气的吸附剂。在此,我们报道了一种基于锆(-Zr-)的稳定的含多孔柱[5]芳烃的金属有机框架(MOF),证明将柱[5]芳烃单元嵌入MOF中可以为高效吸附芥子气模拟物2-氯乙基乙基硫醚(CEES)提供特定的结合位点。与未嵌入柱[5]芳烃单元的对应物(-Zr-)和单独的全乙基化柱[5]芳烃()相比,-Zr-具有更高的吸附容量和更快的吸附速度。单晶X射线衍射和固态核磁共振表明,-Zr-性能的增强源于CEES与柱[5]芳烃部分之间的主客体络合。此外,穿透实验证实,与-Zr-(353分钟/克)和(0.873分钟/克)相比,-Zr-对CEES(800 ppm,120毫升/分钟)的拦截性能显著提高(566分钟/克),这归因于开放通道与特定识别位点的整合。这项工作标志着在开发具有识别位点以有效捕获客体分子的大环结合晶体框架材料方面取得了重大进展。

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