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多波长光响应的 Au/B-TiO 二色性微米马达。

Multiwavelength Light-Responsive Au/B-TiO Janus Micromotors.

机构信息

Multi-Scale Robotics Lab, Institute of Robotics and Intelligent Systems, ETH Zurich , Zurich, CH-8092, Switzerland.

Departament de Física, Universitat Autònoma de Barcelona , E-08193 Bellaterra, Spain.

出版信息

ACS Nano. 2017 Jun 27;11(6):6146-6154. doi: 10.1021/acsnano.7b02177. Epub 2017 Jun 14.

Abstract

Conventional photocatalytic micromotors are limited to the use of specific wavelengths of light due to their narrow light absorption spectrum, which limits their effectiveness for applications in biomedicine and environmental remediation. We present a multiwavelength light-responsive Janus micromotor consisting of a black TiO microsphere asymmetrically coated with a thin Au layer. The black TiO microspheres exhibit absorption ranges between 300 and 800 nm. The Janus micromotors are propelled by light, both in HO solutions and in pure HO over a broad range of wavelengths including UV, blue, cyan, green, and red light. An analysis of the particles' motion shows that the motor speed decreases with increasing wavelength, which has not been previously realized. A significant increase in motor speed is observed when exploiting the entire visible light spectrum (>400 nm), suggesting a potential use of solar energy, which contains a great portion of visible light. Finally, stop-go motion is also demonstrated by controlling the visible light illumination, a necessary feature for the steerability of micro- and nanomachines.

摘要

传统的光催化微马达由于其窄的光吸收谱,限制了它们在生物医学和环境修复等应用中的有效性,只能使用特定波长的光。我们提出了一种多波长光响应的 Janus 微马达,它由一个黑色的 TiO 微球不对称地涂有一层薄的 Au 层组成。黑色的 TiO 微球在 300nm 到 800nm 之间有吸收范围。Janus 微马达在 HO 溶液中和纯 HO 中都能被光驱动,波长范围很广,包括 UV、蓝色、青色、绿色和红色光。对粒子运动的分析表明,马达的速度随波长的增加而降低,这是以前没有实现的。当利用整个可见光光谱(>400nm)时,观察到马达速度的显著增加,这表明太阳能有很大的利用潜力,因为太阳能包含了很大一部分可见光。最后,通过控制可见光的照射,实现了停走运动,这是微纳机器可控性的必要特征。

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