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具有对神经毒剂和糜烂性毒剂模拟物解毒催化能力的卟啉部分功能化金属有机层

Porphyrin-Moiety-Functionalized Metal-Organic Layers Exhibiting Catalytic Capabilities for Detoxifying Nerve Agent and Blister Agent Simulants.

作者信息

Zhao He, Tao Cheng-An, Zhao Shiyin, Zou Xiaorong, Wang Fang, Wang Jianfang

机构信息

College of Science, National University of Defense Technology, Changsha 410073, China.

出版信息

ACS Appl Mater Interfaces. 2023 Jan 18;15(2):3297-3306. doi: 10.1021/acsami.2c18126. Epub 2023 Jan 6.

Abstract

The development of very efficient bifunctional catalysts for the simultaneous detoxification of two kinds of the deadliest chemical warfare agents (CWAs), nerve agent and blister agent, is highly desirable. In this study, two porphyrin-based ligands [tetrakis(4-carboxyphenyl) porphyrin (TCPP) and protoporphyrin IX (PPIX)] are introduced into 2D Zr-1,3,5-tris(4-carboxyphenyl)benzene (BTB) metal-organic layers (MOLs), composed of six-connected Zr nodes and the tritopic carboxylate ligand BTB, by a solvent-assisted ligand incorporation method. The loads of TCPP and PPIX are 6.4 and 10.9 wt %, respectively. The detoxification of simulants of the nerve agent and the blister agent was conducted to investigate the catalytic activity of porphyrin-moiety-functionalized MOLs. The reaction half-life of optimal TCPP-functionalized MOL catalyzing the hydrolysis of a nerve agent simulant is only 2.8 min, meanwhile, the half-life of the selective catalytic oxidation of a blister agent simulant is only 1.2 min under LED illumination. More importantly, such a degradation half-life is only about 4 min under natural sunlight (∼60 mW/cm). To our knowledge, TCPP-functionalized MOL is by far the most efficient catalyst for blister agent simulant degradation under solar light. Therefore, 2D ultrathin MOLs on demand appear to be a promising and efficient material platform for the development of bifunctional catalysts for CWA protection.

摘要

开发能够同时解毒两种最致命化学战剂(神经毒剂和糜烂性毒剂)的高效双功能催化剂是非常必要的。在本研究中,通过溶剂辅助配体掺入法,将两种基于卟啉的配体[四(4-羧基苯基)卟啉(TCPP)和原卟啉IX(PPIX)]引入到由六连接Zr节点和三齿羧酸盐配体1,3,5-三(4-羧基苯基)苯(BTB)组成的二维Zr金属有机层(MOLs)中。TCPP和PPIX的负载量分别为6.4 wt%和10.9 wt%。对神经毒剂和糜烂性毒剂模拟物进行解毒,以研究卟啉部分功能化MOLs的催化活性。最佳TCPP功能化MOL催化神经毒剂模拟物水解的反应半衰期仅为2.8分钟,同时,在LED光照下,糜烂性毒剂模拟物选择性催化氧化的半衰期仅为1.2分钟。更重要的是,在自然阳光(~60 mW/cm)下,这种降解半衰期仅约为4分钟。据我们所知,TCPP功能化MOL是迄今为止在太阳光下降解糜烂性毒剂模拟物最有效的催化剂。因此,按需制备的二维超薄MOLs似乎是开发用于化学战剂防护的双功能催化剂的一个有前途且高效的材料平台。

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