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Design of MXene Composites with Biomimetic Rapid and Self-Oscillating Actuation under Ambient Circumstances

机译:在环境环境下施生效生物振动致动的蒙翅复合材料的设计

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摘要

Although responsive actuators have been intensively investigated, it remains challenging to enable rapid and self-oscillating actuation under ambient circumstances without human intervention analogous to living organisms. By hybridizing a unique type of two-dimensional nanomaterials (i.e., MXene) with a particular hydrophilic polymer, a smart and flexible conductive composite was produced with rapid actuation and spontaneous oscillation near a moist surface. Due to the presence of layered microstructures and the moisture-sensitivity improved by surface roughness and intercalated polymeric layers, the composites could reversibly bend up to 180° in 2 s or 210° in 10 s on demand when the circumstantial humidity was varied, being superior or comparable to many actuators in the literature. More importantly, the composite was capable not only of flipping upside down repeatedly on the moist surface but also of self-oscillating ceaselessly under ambient gradient humidity without human intervention, e.g., an oscillation between 30 and 100° with an oscillation frequency of 0.08 Hz. This self-oscillation resulted from the occurrence of rapid asymmetrical hydration and dehydration of the composite between the regions of high and low humidity, which could further be modulated both by different hydrophilic polymers and by photoradiation owing to the photothermal effect of MXene nanosheets. Because of the ubiquitous presence of humidity gradient near the moist surface, this type of smart composite may not only offer a strategy for designing artificial materials that are capable of spontaneous actuation under ambient circumstance without human intervention but also promise potential applications in artificial muscles, autonomous robotics, and energy harvesting from environments.
机译:尽管对响应式执行器进行了深入研究,但在环境条件下实现快速和自振荡执行器仍然具有挑战性,而无需类似于活生物体的人为干预。通过将一种独特的二维纳米材料(即MXene)与一种特殊的亲水性聚合物杂交,可以在潮湿表面附近快速驱动和自发振荡,制备出一种智能的柔性导电复合材料。由于层状微结构的存在,以及表面粗糙度和插入聚合物层改善的湿敏性,当环境湿度变化时,复合材料可在2秒内可逆弯曲180°,或在10秒内可逆弯曲210°,优于或可与文献中的许多致动器相媲美。更重要的是,该复合材料不仅能够在潮湿表面上反复翻转,而且能够在环境梯度湿度下不间断地自振荡,而无需人工干预,例如,在30°和100°之间振荡,振荡频率为0.08 Hz。这种自激振荡是由于复合材料在高湿度和低湿度区域之间发生了快速不对称的水合和脱水,这可能进一步受到不同亲水性聚合物和MXene纳米片光热效应的光辐射的调制。由于潮湿表面附近普遍存在湿度梯度,这种智能复合材料不仅可以提供一种设计人工材料的策略,使其能够在无需人工干预的环境下自动驱动,还可以在人工肌肉、自主机器人和环境能量收集等方面具有潜在的应用前景。

著录项

  • 来源
    《ACS applied materials & interfaces》 |2021年第27期|共8页
  • 作者单位

    Chemical Engineering College Sichuan University;

    Group of Biomimetic Smart Materials CAS Key Laboratory of Bio-Based Materials Qingdao Institute of Bioenergy and Bioprocess Technology Chinese Academy of Sciences;

    Group of Biomimetic Smart Materials CAS Key Laboratory of Bio-Based Materials Qingdao Institute of Bioenergy and Bioprocess Technology Chinese Academy of Sciences;

    Group of Biomimetic Smart Materials CAS Key Laboratory of Bio-Based Materials Qingdao Institute of Bioenergy and Bioprocess Technology Chinese Academy of Sciences;

    Chemical Engineering College Sichuan University;

    Group of Biomimetic Smart Materials CAS Key Laboratory of Bio-Based Materials Qingdao Institute of Bioenergy and Bioprocess Technology Chinese Academy of Sciences;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学工业;
  • 关键词

    MXene; self-oscillation; composite; ambient moisture; photothermal effect;

    机译:MXene;自振荡;混合成的环境湿度;光热效应;
  • 入库时间 2022-08-20 20:23:48

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