模块化设计
变形
微尺度化学
计算机科学
制作
推进
智能材料
纳米技术
试验台
自重构模块化机器人
材料科学
计算机硬件
机器人
人工智能
工程类
移动机器人
航空航天工程
医学
操作系统
机器人控制
病理
数学教育
数学
计算机网络
替代医学
作者
Zhiqiang Zheng,Huaping Wang,Sinan Özgün Demir,Qiang Huang,Toshio Fukuda,Metin Sitti
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2022-12-14
卷期号:8 (50)
被引量:53
标识
DOI:10.1126/sciadv.ade6135
摘要
Systems with programmable and complex shape morphing are highly desired in many fields wherein sensing, actuation, and manipulation must be performed. Living organisms use nonuniform distributions of their body structural composition to achieve diverse shape morphing, motion, and functionality. However, for the microrobot fabrication, these designs often involve complicated robotic architectures requiring time-consuming and arduous fabrication processes. This paper proposes a single-step aniso-electrodeposition method for fabricating modular microrobots (MMRs) with distinct functions in each modular segment. By programming the electric field, the microscale stripe-shaped structure can be endowed with diverse shape-morphing capabilities, such as spiraling, twisting, bending, and coiling. The proposed fabrication method can develop MMRs with multiple independent modules onto which cells, drugs, and magnetic nanoparticles can be loaded to achieve multifunctionality. Thus, MMRs can perform multiple tasks, such as propulsion, grasping, and object delivery, simultaneously under magnetic control and ionic and pH stimuli.
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