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Bioinspired Ionic Soft Actuator Based on Core-Shell-Structured Bacterial Cellulose Membrane

机译:基于核-壳结构的细菌纤维素膜的生物启发离子软执行器

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Bioinspired soft actuators have received burgeoning interest because of their applications in future electronic devices including soft robots, soft haptic devices, human-friendly flexible wearable devices, and biomedical robots. Here, a biofriendly soft actuator was newly designed based on core-shell-structured bacterial cellulose membrane, which was fabricated by homogeneously depositing polypyrrole nanoparticles on the surface of TEMPO-Oxidized bacterial cellulose (TOBC) nanofibers via a chemical polymerization method. The proposed soft actuator under both harmonic and step electrical inputs showed relatively large bending mechanical deformation, fast response time, and good long-term durability in air condition, which was due to the enhanced electrochemical properties of TOBC-Polypyrrole membrane, resulting from its highly porous structure and high conductivity. Therefore, the designed TOBC-Polypyrrole actuator can be a strong candidate for bioinspired actuating devices such as, soft and wearable electronics, and active biomedical devices.
机译:受生物启发的软执行器受到了广泛的关注,因为它们在未来的电子设备中得到了应用,包括软机器人,软触觉设备,人性化的柔性可穿戴设备以及生物医学机器人。在此,基于核-壳结构的细菌纤维素膜新设计了一种生物友好型软促动器,该膜是通过化学聚合方法将聚吡咯纳米颗粒均匀沉积在TEMPO-氧化细菌纤维素(TOBC)纳米纤维的表面上而制成的。拟议中的谐波和步进电输入下的软促动器显示出较大的弯曲机械变形,快速的响应时间以及良好的空调长期耐久性,这是由于TOBC-聚吡咯膜的高度电化学性能增强了多孔结构,导电率高。因此,设计的TOBC-聚吡咯致动器可以成为受生物启发的致动设备(如软,可穿戴电子设备和有源生物医学设备)的理想选择。

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