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首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Light-driven Ti3C2 MXene micromotors: self-propelled autonomous machines for photodegradation of nitroaromatic explosives
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Light-driven Ti3C2 MXene micromotors: self-propelled autonomous machines for photodegradation of nitroaromatic explosives

机译:轻型TI3C2 MXENE MICROMOTORS:用于光致硝芳衍生物的自推进自动机床

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Self-propelled artificial micro/nano machines performing targeted tasks have recently attracted the research attention of materials scientists. Here, we prepare sandwich-like TiO2@Ti3C2/Pt structures to serve as light-driven micromotors. A Pt layer is used to protect one side of the Ti3C2 nanoflakes from oxidation and also enhances its photocatalytic activity. The other side of the Ti3C2 nanoflakes is exposed and develops a TiO2 layer by oxidation. Such 2D material-based micromotors allow light-driven motion and on-the-move photodegradation of 2,4,6-trinitrotoluene. This work represents a new proof-of-concept for the use of two-dimensional materials for fuel-free light-driven micromotors with enhanced photodegradation ability toward environmental pollutants and explosives.
机译:执行目标任务的自行式人工微/纳米机器最近引起了材料科学家的研究关注。在这里,我们准备三明治就像TiO2@Ti3C2/Pt结构用作光驱动微电机。铂层用于保护Ti3C2纳米片的一侧不被氧化,并提高其光催化活性。Ti3C2纳米片的另一侧暴露,并通过氧化形成TiO2层。这种基于2D材料的微电机允许光驱动运动和2,4,6-三硝基甲苯的移动光降解。这项工作为二维材料在无燃料光驱动微电机中的应用提供了新的概念证明,该微电机对环境污染物和爆炸物具有更强的光降解能力。

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