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电化学驱动自主式电泳纳米潜艇。

Electrochemically powered self-propelled electrophoretic nanosubmarines.

机构信息

Division of Chemistry & Biological Chemistry, School of Physical and Mathematical Sciences, Nanyang Technological University, Singapore.

出版信息

Nanoscale. 2010 Sep;2(9):1643-9. doi: 10.1039/c0nr00287a. Epub 2010 Aug 2.

Abstract

In the past few years, we have witnessed rapid developments in the realization of the old nanotechnology dream, autonomous nanosubmarines. These nanomachines are self-powered, taking energy from their environment by electrocatalytic conversion of chemicals present in the solution, self-propelled by flux of the electrons within the submarine and the hydronium ions on the surface of the nanosub, powering it in the direction opposite to that of the flux of the hydronium. These nanosubmarines are responsive to external fields, able to follow complex magnetic patterns, navigate themselves in complex microfluidic channels, follow chemical gradients, carry cargo, and communicate with each other. This minireview focuses on a discussion of the fundamentals of the electrophoretic mechanism underlying the propulsion of this sort of nanosub, as well as a demonstration of the proof-of-concept capabilities of nanosubmarines.

摘要

在过去的几年中,我们见证了自主纳米潜水艇这一古老的纳米技术梦想的快速实现。这些纳米机器是自供电的,通过电化学转化溶液中存在的化学物质从环境中获取能量,通过潜艇内的电子流和纳米潜水艇表面的水合氢离子推动自身前进,为纳米潜水艇提供与水合氢离子流动方向相反的动力。这些纳米潜水艇对外场有响应能力,能够跟随复杂的磁场模式,在复杂的微流道中自行导航,跟随化学梯度,携带货物,并相互通信。这篇综述聚焦于讨论推动这种纳米潜水艇的电泳机制的基本原理,并展示纳米潜水艇的概念验证能力。

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