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A dynamic self-regulation actuator combined double network gel with gradient structure driven by chemical oscillating reaction.


ABSTRACT: Self-regulation of the dynamic actuation of a chemical oscillating reaction-based gel was realized by altering the network structure of the gradient double network gel. We demonstrated that the propagation mode of the chemical wave was influenced by the network structure, and consequently determined the dynamic feature of the gel actuator.

SUBMITTER: Li J 

PROVIDER: S-EPMC9063756 | biostudies-literature | 2019 Apr

REPOSITORIES: biostudies-literature

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A dynamic self-regulation actuator combined double network gel with gradient structure driven by chemical oscillating reaction.

Li Jie J   Li Xiuchen X   Zheng Zhaohui Z   Ding Xiaobin X  

RSC advances 20190430 23


Self-regulation of the dynamic actuation of a chemical oscillating reaction-based gel was realized by altering the network structure of the gradient double network gel. We demonstrated that the propagation mode of the chemical wave was influenced by the network structure, and consequently determined the dynamic feature of the gel actuator. ...[more]

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