变形
杰纳斯
模块化设计
计算机科学
可编程逻辑器件
材料科学
制作
简单可编程逻辑器件
智能材料
杰纳斯粒子
纳米技术
计算机硬件
人工智能
逻辑综合
逻辑门
医学
替代医学
逻辑族
病理
算法
操作系统
作者
Min Zhao,Lefeng Wang,Yuanzhe He,H. Rong,Yi Sun,Sizhe Ding,Hui Xie
标识
DOI:10.1021/acsami.4c14721
摘要
Through billions of years of evolution, small and microorganisms have come to possess distinctive shape-morphing abilities to live in complex fluid environments. However, fabricating milliscale programmable machines with shape-morphing ability often involves complicated architectures requiring arduous fabrication processes and multiple external stimuli. Here, milliscale programmable machines with reconfigurable structures and extensible sizes are proposed based on the sequential assembly of simple Janus disks at liquid surfaces. The modular machines consist of magnetic Janus disks that are assembled into expected chain shapes in turn. Based on the modular structures with programmable shapes, multiple locomotion modes are developed according to their structural characteristics. Their multifunctionality in manipulating and delivering objects through contacting or noncontacting ways based on the programmable structures is demonstrated. The shape-programmable behaviors of the machines open up a new way toward constructing reconfigurable soft microrobots and understanding complex assembly mechanisms.
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