首页> 外文期刊>Applied Catalysis, B. Environmental: An International Journal Devoted to Catalytic Science and Its Applications >Bio-inspired design: Inner-motile multifunctional ZnO/CdS heterostructures magnetically actuated artificial cilia film for photocatalytic hydrogen evolution
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Bio-inspired design: Inner-motile multifunctional ZnO/CdS heterostructures magnetically actuated artificial cilia film for photocatalytic hydrogen evolution

机译:生物启发的设计:可移动的多功能ZnO / CdS异质结构磁性驱动的人造纤毛膜,用于光催化制氢

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摘要

A novel inner-motile film for photocatalytic water splitting has been designed for the first time. The inner-motile photocatalyst film is a highly elaborate machinery and mainly integrates three functional modules - magnetically actuated artificial cilia, ZnO nanowires arrays and CdS quantum dots, which can work synergistically to enhance the photocatalytic hydrogen evolution activity. Through citing magnetically actuated artificial cilia, the inner-motile film can mimic ciliary motion like nature beating cilia under a rotational magnetic field. Hence it exhibits a singular ability of microfluidic manipulation, which is helpful to solve the stubborn problem of desorption of hydrogen and promotes release of active sites. In contrast to the traditional external magnetic-stirrer technologies, the photocatalytic activity can be greatly improved. Moreover, forest-like hierarchical structured ZnO nanowires arrays have been constructed by being grafted on magnetically actuated artificial cilia, which increase the surface area and light absorption. Furthermore, the photo catalytic modules - coupled ZnO/CdS heterostructures based on the Z-scheme mechanism has been devised to enhance electron-hole separation and interfacial charge transfer, in which ZnO and CdS serve as PS II and PS I, respectively. Consequently, the H-2 evolution rates of ZnO nanowires arrays/CdS heterostructures are about 2.7 times, 2.0 times of CdS substance and ZnO nanoparticles/CdS heterostructures, respectively. The design of the inner-motile system film is based on both nature cilia and photosynthesis, which would broaden the horizon for constructing artificial photocatalyst system and provide a new working prototype for photochemical hydrogen production. (C) 2014 Elsevier B.V. All rights reserved.
机译:首次设计了一种用于光催化水分解的新型内部运动膜。内移动型光催化膜是一种高度复杂的机械,主要集成了三个功能模块-磁致动纤毛,ZnO纳米线阵列和CdS量子点,它们可以协同工作以增强光催化氢的析出活性。通过引用磁性驱动的人造纤毛,内运动膜可以在自然旋转的磁场下模仿纤毛的运动,就像自然跳动的纤毛一样。因此,它表现出微流体操纵的独特能力,这有助于解决氢解吸的顽固问题并促进活性位点的释放。与传统的外部磁刺激器技术相比,可以大大提高光催化活性。此外,通过嫁接到磁驱动的人造纤毛上,已经构建了森林状的分层结构的ZnO纳米线阵列,这增加了表面积和光吸收。此外,已经设计出基于Z方案机理的光催化模块-耦合的ZnO / CdS异质结构以增强电子-空穴分离和界面电荷转移,其中ZnO和CdS分别用作PS II和PSI。因此,ZnO纳米线阵列/ CdS异质结构的H-2演化速率分别约为CdS物质和ZnO纳米粒子/ CdS异质结构的2.7倍,2.0倍。内运动系统膜的设计基于纤毛和光合作用,这将为构建人造光催化剂系统开阔眼界,并为光化学制氢提供了新的工作原型。 (C)2014 Elsevier B.V.保留所有权利。

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