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磁驱动在低雷诺数下的推进:迈向纳米级控制。

Magnetically actuated propulsion at low Reynolds numbers: towards nanoscale control.

机构信息

Fraunhofer Institute for Physical Measurement Techniques IPM, Heidenhofstrasse 8, 79110, Freiburg, Germany.

出版信息

Nanoscale. 2011 Feb;3(2):557-63. doi: 10.1039/c0nr00566e. Epub 2010 Dec 10.

Abstract

Significant progress has been made in the fabrication of micron and sub-micron structures whose motion can be controlled in liquids under ambient conditions. The aim of many of these engineering endeavors is to be able to build and propel an artificial micro-structure that rivals the versatility of biological swimmers of similar size, e.g. motile bacterial cells. Applications for such artificial "micro-bots" are envisioned to range from microrheology to targeted drug delivery and microsurgery, and require full motion-control under ambient conditions. In this Mini-Review we discuss the construction, actuation, and operation of several devices that have recently been reported, especially systems that can be controlled by and propelled with homogenous magnetic fields. We describe the fabrication and associated experimental challenges and discuss potential applications.

摘要

在制造微米和亚微米结构方面已经取得了重大进展,这些结构在环境条件下的液体中可以控制其运动。这些工程努力的目的之一是能够构建和推进一种人工微结构,使其与类似大小的生物游泳者的多功能性相媲美,例如能动细菌细胞。这种人工“微机器人”的应用范围从微流变学到靶向药物输送和微创手术,并且需要在环境条件下进行全运动控制。在这篇小型综述中,我们讨论了最近报道的几种装置的构建、驱动和操作,特别是可以通过均匀磁场控制和推动的系统。我们描述了制造方法和相关的实验挑战,并讨论了潜在的应用。

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