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Re-shaping graphene hydrogels for effectively enhancing actuation responses

机译:为有效地修改石墨烯水凝胶提高驱动反应

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摘要

The development of actuation-enabled materials is important for smart devices and systems. Among them, graphene with outstanding electric, thermal, and mechanical properties holds great promise as a new type of stimuli-responsive material. In this study, we developed a re-shaping strategy to construct structure-controlled graphene hydrogels for highly enhanced actuation responses. Actuators based on the re-shaped graphene hydrogel showed a much higher actuation response than that of the common graphene counterparts. On the other hand, once composited with a conducting polymer (e.g., polypyrrole), the re-shaped hybrid actuator exhibits excellent actuation behavior in response to electrochemical potential variation. Even under stimulation at a voltage as low as 0.8 V, actuators based on the re-shaped graphene-polypyrrole composite hydrogel exhibit a maximum strain response of up to 13.5%, which is the highest value reported to date for graphene-based materials.
机译:actuation-enabled材料的发展重要的智能设备和系统。石墨烯与杰出的电气,热,和机械性能好作为一种新型stimuli-responsive承诺材料。重塑形象战略构建structure-controlled石墨烯水凝胶的高度增强的冲动反应。根据日前石墨烯水凝胶显示更高的冲动反应常见的石墨烯。一旦合成导电聚合物(例如,聚吡咯),日前混合执行机构展示优秀的驱动行为的反应电化学势的变化。在0.8 V低电压刺激下,致动器基于日前graphene-polypyrrole复合水凝胶表现出高达13.5%的最大应变响应,这是迄今为止报道的最高价值石墨烯材料。

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