Department of Chemistry, The University of Hong Kong, Pokfulam, Hong Kong, China.
Nat Commun. 2017 Nov 10;8(1):1438. doi: 10.1038/s41467-017-01778-9.
Nano/microswimmers represent the persistent endeavors of generations of scientists towards the ultimate tiny machinery for device manufacturing, targeted drug delivery, and noninvasive surgery. In many of these envisioned applications, multiple microswimmers need to be controlled independently and work cooperatively to perform a complex task. However, this multiple channel actuation remains a challenge as the controlling signal, usually a magnetic or electric field, is applied globally over all microswimmers, which makes it difficult to decouple the responses of multiple microswimmers. Here, we demonstrate that a photoelectrochemically driven nanotree microswimmer can be easily coded with a distinct spectral response by loading it with dyes. By using different dyes, an individual microswimmer can be controlled and navigated independently of other microswimmers in a group. This development demonstrates the excellent flexibility of the light navigation method and paves the way for the development of more functional nanobots for applications that require high-level controllability.
纳米/微米级游泳者代表了几代科学家朝着制造设备、靶向药物输送和非侵入性手术的终极微小机械不懈努力的方向。在这些设想的应用中,多个微游泳者需要独立控制并协同工作以完成复杂任务。然而,这种多通道致动仍然是一个挑战,因为控制信号(通常是磁场或电场)全局应用于所有微游泳者,这使得难以解耦多个微游泳者的响应。在这里,我们证明,通过用染料负载,光电化学驱动的纳米树微游泳者可以很容易地用独特的光谱响应进行编码。通过使用不同的染料,可以独立控制和导航单个微游泳者,而无需考虑组中其他微游泳者。这一发展展示了光导航方法的出色灵活性,并为开发更具功能性的纳米机器人铺平了道路,这些机器人适用于需要高水平可控性的应用。