鞭毛
平面的
材料科学
纳米技术
铰链
磁场
磁铁
执行机构
计算机科学
物理
机械工程
经典力学
工程类
化学
人工智能
生物化学
量子力学
基因
计算机图形学(图像)
作者
Bumjin Jang,Emiliya Gutman,Nicolai Stucki,Benedikt F. Seitz,Pedro David Wendel‐Garcia,Taylor Newton,Juho Pokki,Olgaç Ergeneman,Salvador Pané,Yizhar Or,Bradley J. Nelson
出处
期刊:Nano Letters
[American Chemical Society]
日期:2015-06-01
卷期号:15 (7): 4829-4833
被引量:222
标识
DOI:10.1021/acs.nanolett.5b01981
摘要
Micro- and nanorobots operating in low Reynolds number fluid environments require specialized swimming strategies for efficient locomotion. Prior research has focused on designs mimicking the rotary corkscrew motion of bacterial flagella or the planar beating motion of eukaryotic flagella. These biologically inspired designs are typically of uniform construction along their flagellar axis. This work demonstrates for the first time planar undulations of composite multilink nanowire-based chains (diameter 200 nm) induced by a planar-oscillating magnetic field. Those chains comprise an elastic eukaryote-like polypyrrole tail and rigid magnetic nickel links connected by flexible polymer bilayer hinges. The multilink design exhibits a high swimming efficiency. Furthermore, the manufacturing process enables tuning the geometrical and material properties to specific applications.
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