4.6 Article

A Versatile Self-Detoxifying Material Based on Immobilized Polyoxoniobate for Decontamination of Chemical Warfare Agent Simulants

期刊

CHEMISTRY-A EUROPEAN JOURNAL
卷 24, 期 72, 页码 19208-19215

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/chem.201804523

关键词

chemical warfare agents; decontamination; heterogeneous catalysis; niobium; polyoxometalates; self-detoxifying material

资金

  1. National Natural Science Foundation of China [21671019, 21871026, 21771020]
  2. 973 Program [2014CB932103]
  3. Thousand Young Talents Program of China

向作者/读者索取更多资源

A decontaminating composite, Mg3Al-LDH-Nb-6, has been successfully prepared by immobilizing Lindqvist [H3Nb6O19](5-) (Nb-6) into a Mg3Al-based layered double hydroxide (Mg3Al-LDH). To our knowledge, this represents the first successful approach to the immobilization of polyoxoniobate. As a versatile catalyst, Mg3Al-LDH-Nb-6 can effectively catalyze the degradation of both vesicant and nerve agent simulants by multiple pathways under mild conditions. Specifically, the sulfur mustard simulant, 2-chloroethyl ethyl sulfide (CEES), is converted into the corresponding nontoxic 2-chloroethyl ethyl sulfoxide (CEESO) by selective oxidation, whereas the Tabun (G-type nerve agent) simulant, diethyl cyanophosphonate (DECP), and the VX (V-type nerve agent) simulant, O,S-diethyl methylphosphonothioate (OSDEMP), are detoxified through hydrolysis and perhydrolysis, respectively. A possible mechanism is proposed on the basis of control experiments and spectroscopic studies. The Mg3Al-LDH-Nb-6 composite exhibits remarkable robustness and can be readily reused for up to ten cycles with negligible loss of its catalytic activity. More importantly, a protective self-detoxifying material has easily been constructed by integrating Mg3Al-LDH-Nb-6 into textiles. In this way, the flexible and permeable properties of textiles have been combined with the catalytic activity of polyoxoniobate to remove 94 % of CEES in 1 h by using nearly stoichiometric dilute H2O2 (3 %) as oxidant with 96 % selectivity.

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