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Untethered small-scale magnetic soft robot with programmable magnetization and integrated multifunctional modules.


ABSTRACT: Intelligent magnetic soft robots capable of programmable structural changes and multifunctionality modalities depend on material architectures and methods for controlling magnetization profiles. While some efforts have been made, there are still key challenges in achieving programmable magnetization profile and creating heterogeneous architectures. Here, we directly embed programmed magnetization patterns (magnetization modules) into the adhesive sticker layers to construct soft robots with programmable magnetization profiles and geometries and then integrate spatially distributed functional modules. Functional modules including temperature and ultraviolet light sensing particles, pH sensing sheets, oil sensing foams, positioning electronic component, circuit foils, and therapy patch films are integrated into soft robots. These test beds are used to explore multimodal robot locomotion and various applications related to environmental sensing and detection, circuit repairing, and gastric ulcer coating, respectively. This proposed approach to engineering modular soft material systems has the potential to expand the functionality, versatility, and adaptability of soft robots.

SUBMITTER: Dong Y 

PROVIDER: S-EPMC9217092 | biostudies-literature | 2022 Jun

REPOSITORIES: biostudies-literature

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Untethered small-scale magnetic soft robot with programmable magnetization and integrated multifunctional modules.

Dong Yue Y   Wang Lu L   Xia Neng N   Yang Zhengxin Z   Zhang Chong C   Pan Chengfeng C   Jin Dongdong D   Zhang Jiachen J   Majidi Carmel C   Zhang Li L  

Science advances 20220622 25


Intelligent magnetic soft robots capable of programmable structural changes and multifunctionality modalities depend on material architectures and methods for controlling magnetization profiles. While some efforts have been made, there are still key challenges in achieving programmable magnetization profile and creating heterogeneous architectures. Here, we directly embed programmed magnetization patterns (magnetization modules) into the adhesive sticker layers to construct soft robots with prog  ...[more]

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