材料科学
机器人
可控性
纳米技术
纳米纤维
无线
过程(计算)
纳米材料
纤维素
软机器人
数码产品
智能材料
计算机科学
电气工程
人工智能
工程类
数学
应用数学
电信
化学工程
操作系统
作者
Xueqi Li,Ziqiang Shang,Yaoxing Wang,Jiuqing Liu,Yanjun Xie,Jian Li,Yiqi Liu,Wentao Gan
标识
DOI:10.1021/acsami.3c01129
摘要
Magnetic soft robots composed of stimuli-responsive materials are promising for biomedical engineering applications; however, typical responsive materials are fabricated with nondegradable polymeric substrates. In this study, we report a flexible, biodegradable, and magnetically sensitive cellulose film (M-film) that can be utilized for magnetically controllable soft robots (M-robots) with programmable locomotion, cargo delivery, and remote wireless operation functions. The M-film with good foldability, origami, and magnetic properties is synthesized by a simple paper-making process using cellulose nanofibers, additive sodium alginate, and BaFe12O19 particles. Through the following origami-magnetization process, the M-robot with multimodal movements is designed: climbing over the obstacles in the walking environment; additionally, this process can complete various cargo transport tasks by clawing, rolling, and flipping. This approach expands the precise controllability and manipulability of environmentally friendly cellulose nanomaterials beyond the known applications and opens the prospects of their implementation in stimuli-responsive robots, wireless control electronics, and intelligent devices.
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