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A bio-inspired co-simulation crawling robot enabled by a carbon dot-doped dielectric elastomer

Yubing Han, Bori Shi, En Xie, Peng Huang, Chang Xue, Weijia Wen, Huayan Pu, Jinbo Wu

Year
2024
Citations
2

Abstract

cluster particles not only effectively improves the mechanical and dielectric properties of the elastomer but also exhibits fluorescence response and actuation response under the co-stimulation of UV and electricity, respectively. Additionally, a hybrid dielectric elastomer actuator (DEA) with a transparent SWCNT mesh electrode exhibits two notable advancements: an 826% increase in out-of-plane displacement under low electric field stimulation compared to the pure matrix and the ability of NCDs to maintain a stable excited state within the polymer for an extended duration under UV-excitation. Simultaneously, the transparent biomimetic crawling robot can stealthily move in specific environments and fluoresce under UV light.

Keywords

ElastomerDielectricMaterials scienceCrawlingDopingCarbon fibersRobotCluster (spacecraft)NanotechnologyOptoelectronics

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