材料科学
异质结
杰纳斯
肖特基势垒
光催化
纳米技术
三元运算
无定形固体
光电子学
二极管
催化作用
化学
计算机科学
生物化学
有机化学
程序设计语言
作者
Amir Masoud Pourrahimi,Katherine Villa,Zdeněk Sofer,Martin Pumera
标识
DOI:10.1002/smtd.201900258
摘要
Abstract Conventional binary light‐driven micromotors, based on semiconducting photocatalysts and metal junctions, have mostly shown limited speed and charge separation/transport due to their not well‐designed interfaces. Here ZnO/Pt Janus micromotors with atomically smooth interfaces are introduced, which show fast light‐driven and fuel‐free propulsion (15 body‐length s −1 ). Furthermore, the speed of ZnO/Pt micromotors is increased by ≈60% with a few atomic amorphous TiO 2 photocatalyst interlayers. The new photocatalysts' interfaces, i.e., ZnO/TiO 2 , provide type II heterojunctions, leading to an increase in the number of electron/hole pairs and then improving the electron transfer to Pt metal. This effective charge separation/transfer results in a faster electrophoretic motion of the novel ternary ZnO/TiO 2 /Pt micromotors. The concept of the type II heterojunction, which is well known in photocatalysis communities, is used in light‐driven micromotors as a new approach and paves the way for the next‐generation of faster fuel‐free “green” micromotors.
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