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Controllable and Stable Deformation of a Self-Healing Photo-Responsive Supramolecular Assembly for an Optically Actuated Manipulator Arm

机译:用于光学致动的机械手臂的自愈合光响应式超分子组件的可控且稳定的变形

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摘要

It is highly challenging to achieve an optically deformable polymer with good controllability, stability, and self-healability for fabricating an optically controlled microrobotics. Here, we present a photo-responsive self-healing supramolecular assembly cross-linked by 3,3',5,5'-azobenzenetetracarboxylic acid (t-Azo) enabling the controllable and stable deformation. The network (PAA-u) of polyacrylic acid (PAA) grafted with 2-ureido-4[1H]-pyrimidinone (UPy) is formed via multiple intermolecular hydrogen bonds (H-bonds) between UPy and t-Azo moieties. Molecular H-bonds stabilize the cis-isomer, enables stress transfer at the interface, and also contributes to fast healability. The PAA-u/t-Azo assembly shows a green-light-induced bending deformation, which recovers its shape under the irradiation of UV light. On the basis of this controllable and reversible deformation, the PAA-u/t-Azo "hand" realizes reversible light-driven grabbing and releasing of an object by optimizing bending and recovery. The assembly also shows a fast and excellent self-healing performance irradiated by green light during deformation. The multiple-H-bonding-cross-linked assembly with stable deformation and fast self-healability can be used for the development of a multitude of advanced microrobotics.
机译:实现具有良好可控性,稳定性和自我康复性的光学可变形的聚合物具有强大的具有挑战性,用于制造光学控制的微藻体。在这里,我们介绍了通过3,3',5,5'-偶氮苯甲酸四羧酸(T-AZO)交联的光响应自愈的超分子组件,使得可控且稳定的变形。用2- ureidO-4 [1H] - 嘧啶酮(UPY)接枝的聚丙烯酸(PAA)的网络(PAA-U)通过UPY和T-AZO部分之间的多分子氢键(H键)形成。分子H键稳定顺式异构体,可以在界面处进行应力转移,并且还有助于快速康复性。 PAA-U / T-AZO组件显示了绿光诱导的弯曲变形,其在紫外光照射下恢复其形状。在这种可控和可逆变形的基础上,PAA-U / T-AZO“手”通过优化弯曲和恢复来实现可逆光驱动的抓取和释放物体。该组件还示出了在变形期间由绿光照射的快速和优异的自我愈合性能。具有稳定变形和快速自康复产物的多H键合交联组装可用于开发多种先进的微生物。

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