材料科学
涂层
催化作用
共聚物
对氧磷
化学工程
阻燃剂
基质(水族馆)
金属有机骨架
复合材料
甲基丙烯酸甲酯
复合数
有机化学
聚合物
吸附
化学
海洋学
工程类
乙酰胆碱酯酶
酶
地质学
作者
Jin Young Seo,Min Hyuk Choi,Bo Woo Lee,Jung‐Hyun Lee,Seunghan Shin,Sangho Cho,Kie Yong Cho,Kyung‐Youl Baek
标识
DOI:10.1021/acsami.2c15961
摘要
Defense against chemical warfare agents (CWAs) is regarded as a top priority for the protection of humanity, but it still depends on physical protection with severe limitations such as residual toxicity and post-treatment requirement. In this study, a strategically designed functional polymeric substrate was composited with a metal–organic framework catalyst to remove toxicity immediately. A series of PMMA-BPEI copolymers exhibited high processability as a coating and accelerated the catalytic activity of Zr(IV)-based metal–organic framework catalysts (UiO-66). Among them, PMB12_40 composite coating on a cotton fabric, containing a PMMA-BPEI copolymer (PMMA/BPEI = 1/2) and 40% of UiO-66 catalyst, can efficiently decompose nerve agent simulants (methyl-paraoxon) under both liquid phase (t1/2 = 0.14 h) and humidified (t1/2 = 4.8 h) conditions. Moreover, a real agent, GD, was decomposed 100% by PMB12_40 in 4 h at 25 °C and 65% relative humidity. On the basis of superior catalytic activity, the PMB composites are anticipated to be a potential material for active chemical protection coating.
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