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Water-Driven Micromotors for Rapid Photocatalytic Degradation of Biological and Chemical Warfare Agents

机译:用于生物和化学战剂快速光催化降解的水驱动微电机

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摘要

Threats of chemical and biological warfare agents (CBWA) represent a serious global concern and require rapid and efficient neutralization methods. We present a highly effective micromotor strategy for photocatalytic degradation of CBWA based on light-activated TiO2/Au/Mg microspheres that propel autonomously in natural water and obviate the need for external fuel, decontaminating reagent, or mechanical agitation. The activated TiO2/Au/Mg micromotors generate highly reactive oxygen species responsible for the efficient destruction of the cell membranes of the anthrax simulant Bacillus globigii spore, as well as rapid and complete in situ mineralization of the highly persistent organophosphate nerve agents into nonharmful products. The water-driven propulsion of the TiO2/Au/Mg micromotors facilitates efficient fluid transport and dispersion of the photogenerated reactive oxidative species and their interaction with the CBWA. Coupling of the photocatalytic surface of the micromotors and their autonomous water-driven propulsion thus leads to a reagent-free operation which holds a considerable promise for diverse green defense and environmental applications.
机译:化学和生物战剂(CBWA)的威胁代表了严重的全球关注,并需要快速有效的中和方法。我们提出了一种基于光活化TiO2 / Au / Mg微球的光催化降解CBWA的高效微电机策略,该微球可在天然水中自主推进,并且无需外部燃料,去污剂或机械搅拌。激活的TiO2 / Au / Mg微型电动机产生高反应性氧,负责有效破坏炭疽模拟球藻芽孢杆菌的细胞膜,并将高度持久的有机磷酸神经药迅速,完整地原位矿化成无害产品。 TiO2 / Au / Mg微型电动机的水驱动推进有助于光生反应性氧化物质的有效流体传输和分散以及它们与CBWA的相互作用。微型电动机的光催化表面与其自主的水驱动推进器的耦合因此导致了无试剂运行,这为多种绿色防御和环境应用提供了可观的前景。

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