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A programmable and biomimetic photo-actuator: a composite of a photo-liquefiable azobenzene derivative and commercial plastic film

机译:可编程和仿生光致动器:光学液消解偶氮苯衍生物和商业塑料薄膜的复合物

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摘要

Many interesting deformations in nature inspire us to develop novel mechanical systems. Here, a helical gripper was inspired by the predation motion of pythons. It grasped an object by twisting around it, which is different from conventional claw-shape grippers. To mimic this helical deformation, a soft photo-actuator was fabricated by compositing one photo-liquefiable azobenzene derivative and low-density polyethylene (LDPE) film by a specific route. The actuator was programmed to complete a reversible spiralization and despiralization motion. Upon photoirradiation, the azobenzene derivative transformed directly from crystal to isotropic liquid at room temperature, and the microcosmic volume changes were elegantly transferred into the fabricated bilayer films to bring about a large macroscopic deformation. The photoinduced spiral ribbons show controllable handedness and pitch, in correlation with the light intensity and the pre-treatment method. It is the flexibility of the soft actuator and the strength of the helical deformation that make it possible to simulate the helical motion of pythons’ predation. The actuator can grasp a variety of objects with different sizes and shapes showing its reliability. The bilayer actuators are easily fabricated, manipulative and recyclable, promising their applications as high-performance photomechanical devices.
机译:大自然中的许多有趣的变形激励我们开发新的机械系统。这里,通过蟒蛇的捕食运动启发了螺旋夹具。它通过扭曲它来抓住物体,与传统的爪状夹具不同。为了模仿这种螺旋变形,通过通过特定途径复合一种光液化偶氮苯衍生物和低密度聚乙烯(LDPE)膜来制造软光致动器。致动器被编程为完成可逆螺旋化和绝望运动。在光辐射时,偶氮苯衍生物在室温下直接从晶体转化为各向同性液体,微观体积变化优雅地转移到制造的双层薄膜中,以引入大的宏观变形。光诱导的螺旋带显示可控的手柄和间距,与光强度和预处理方法相关。它是软致动器的灵活性和螺旋变形的强度,使得可以模拟Pythons捕食的螺旋运动。执行器可以用不同尺寸和形状掌握各种物体,显示其可靠性。双层执行器易于制造,操纵和可回收的,使其应用​​成为高性能光学机械设备。

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    Department of Material Science and Engineering College of Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education Peking University;

    Department of Material Science and Engineering College of Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education Peking University;

    Department of Material Science and Engineering College of Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education Peking University;

    Department of Material Science and Engineering College of Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education Peking University;

    Department of Material Science and Engineering College of Engineering Key Laboratory of Polymer Chemistry and Physics of Ministry of Education Peking University;

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  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
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