School of Chemistry and Environment, South China Normal University, Guangzhou 510006, China.
Nanoscale. 2017 Oct 12;9(39):15027-15032. doi: 10.1039/c7nr05168a.
Improving the propulsion of artificial micro-nanomotors represents an exciting nanotechnology challenge, especially considering their cargo delivery ability and fuel efficiency. In light of the excellent photocatalytic performance of zinc oxide (ZnO) and chemical catalytic properties of platinum (Pt), ZnO-Pt microrockets with light-enhanced propulsion have been developed by atomic layer deposition (ALD) technology. The velocity of such microrockets is dramatically doubled upon irradiation by 77 mW cm ultraviolet (UV) light in 10% HO and is almost 3 times higher than the classic poly(3,4-ethylenedioxythiophene)-Pt microrockets (PEDOT-Pt microrockets) even in 6% HO under the same UV light. In addition, such micromotors not only retain the standard approach to improve propulsion by varying the fuel concentration, but also demonstrate a simple way to enhance the movement velocity by adjusting the UV light intensity. High reversibility and controllable "weak/strong" propulsion can be easily achieved by switching the UV irradiation on or off. Finally, light-enhanced propulsion has been investigated by electrochemical measurements which further confirm the enhanced photocatalytic properties of ZnO and Pt. The successful demonstration of ZnO-based microrockets with excellent light-enhanced propulsion is significant for developing highly efficient synthetic micro-nanomotors which have strong delivery ability and economic fuel requirements for future practical applications in the micro-nanoscale world.
提高人工微纳米马达的推进效率是一项令人兴奋的纳米技术挑战,特别是考虑到它们的货物输送能力和燃料效率。鉴于氧化锌 (ZnO) 的优异光催化性能和铂 (Pt) 的化学催化特性,通过原子层沉积 (ALD) 技术开发了具有光增强推进功能的 ZnO-Pt 微火箭。在 10%HO 中,77 mW cm 的紫外 (UV) 光照射下,这种微火箭的速度显著提高了一倍,几乎是经典的聚 (3,4-乙撑二氧噻吩)-Pt 微火箭 (PEDOT-Pt 微火箭) 的 3 倍,即使在相同的 UV 光下,HO 的浓度为 6%。此外,这种微型马达不仅保留了通过改变燃料浓度来提高推进力的标准方法,还展示了一种通过调整紫外光强度来提高运动速度的简单方法。通过打开或关闭紫外光照射,可以轻松实现高可逆性和可控的“弱/强”推进。最后,通过电化学测量研究了光增强推进,进一步证实了 ZnO 和 Pt 的增强光催化性能。成功演示了具有优异光增强推进功能的基于 ZnO 的微火箭,对于开发高效的合成微纳米马达具有重要意义,这些马达具有强大的输送能力和经济的燃料需求,为未来在微纳米尺度世界中的实际应用提供了可能。