微尺度化学
纳米技术
计算机科学
软机器人
介观物理学
仿生学
材料科学
生物系统
物理
人工智能
机器人
数学教育
数学
生物
量子力学
作者
Stefano Palagi,Andrew G. Mark,Shang Yik Reigh,Kai Melde,Tian Qiu,Hao Zeng,Camilla Parmeggiani,Daniele Martella,Alberto Sanchez-Castillo,Nadia Kapernaum,Frank Gießelmann,Diederik S. Wiersma,Eric Lauga,Peer Fischer
出处
期刊:Nature Materials
[Nature Portfolio]
日期:2016-02-15
卷期号:15 (6): 647-653
被引量:935
摘要
Microorganisms move in challenging environments by periodic changes in body shape. In contrast, current artificial microrobots cannot actively deform, exhibiting at best passive bending under external fields. Here, by taking advantage of the wireless, scalable and spatiotemporally selective capabilities that light allows, we show that soft microrobots consisting of photoactive liquid-crystal elastomers can be driven by structured monochromatic light to perform sophisticated biomimetic motions. We realize continuum yet selectively addressable artificial microswimmers that generate travelling-wave motions to self-propel without external forces or torques, as well as microrobots capable of versatile locomotion behaviours on demand. Both theoretical predictions and experimental results confirm that multiple gaits, mimicking either symplectic or antiplectic metachrony of ciliate protozoa, can be achieved with single microswimmers. The principle of using structured light can be extended to other applications that require microscale actuation with sophisticated spatiotemporal coordination for advanced microrobotic technologies.
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