Department of Nanoengineering, University of California, San Diego, La Jolla, CA 92093, USA.
Chem Rec. 2012 Feb;12(1):224-31. doi: 10.1002/tcr.201100031. Epub 2011 Dec 9.
Synthetic micro-/nanomotors represent one of the most exciting challenges facing nanotechnology and hold considerable promise for diverse future applications. This review discusses different strategies to improve the speed of the catalytic nanomotors, summarizing and comparing the maximum absolute and relative speeds obtained with different catalytically propelled micro-/nanomotors. Remarkably ultrafast nanowires and microtube engines, with speeds of 60 and 375 body lengths s(-1), respectively, have been developed recently. Achieving such amazingly high speed and power has been accomplished through rational optimization of key factors governing the propulsion behavior, including composition of the motor and fuel, the motor morphology and various external stimuli. We hope that our discussion will serve as a guide to the rational design of even faster and more powerful catalytically propelled fuel-efficient micro-/nanomotors, with speed limits that are limited only by our imagination.
合成微/纳米马达代表了纳米技术面临的最令人兴奋的挑战之一,为未来的各种应用提供了巨大的潜力。本文综述了不同的策略来提高催化纳米马达的速度,总结和比较了不同催化推进微/纳米马达获得的最大绝对速度和相对速度。最近已经开发出速度分别为 60 和 375 体长/秒的超快纳米线和微管发动机。通过合理优化控制推进行为的关键因素,包括马达和燃料的组成、马达形态以及各种外部刺激,实现了如此惊人的高速和功率。我们希望我们的讨论将有助于合理设计更快、更强大、更节能的催化推进微/纳米马达,其速度限制仅受我们想象力的限制。