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通过曲率工程扭转扭矩实现的可控且灵活的轻燃料滚动移动体

Steerable and Agile Light-Fueled Rolling Locomotors by Curvature-Engineered Torsional Torque.

作者信息

Choi Jun-Chan, Jeon Jisoo, Lee Jae-Won, Nauman Asad, Lee Jae Gyeong, Cho Woongbi, Lee Chanwoo, Cho Young-Min, Wie Jeong Jae, Kim Hak-Rin

机构信息

School of Electronic and Electrical Engineering, Kyungpook National University, 41566, Daegu, Republic of Korea.

Soft Hybrid Materials Research Center, Korea Institute of Science and Technology, 02792, Seoul, Republic of Korea.

出版信息

Adv Sci (Weinh). 2023 Oct;10(30):e2304715. doi: 10.1002/advs.202304715. Epub 2023 Aug 11.

Abstract

On-demand photo-steerable amphibious rolling motions are generated by the structural engineering of monolithic soft locomotors. Photo-morphogenesis of azobenzene-functionalized liquid crystal polymer networks (azo-LCNs) is designed from spiral ribbon to helicoid helices, employing a 270° super-twisted nematic molecular geometry with aspect ratio variations of azo-LCN strips. Unlike the intermittent and biased rolling of spiral ribbon azo-LCNs with center-of-mass shifting, the axial torsional torque of helicoid azo-LCNs enables continuous and straight rolling at high rotation rates (≈720 rpm). Furthermore, center-tapered helicoid structures with wide edges are introduced for effectively accelerating photo-motilities while maintaining directional controllability. Irrespective of surface conditions, the photo-induced rotational torque of center-tapered helicoid azo-LCNs can be transferred to interacting surfaces, as manifested by steep slope climbing and paddle-like swimming multimodal motilities. Finally, the authors demonstrate continuous curvilinear guidance of soft locomotors, bypassing obstacles and reaching desired destinations through real-time on-demand photo-steering.

摘要

通过整体式软驱动器的结构工程实现了按需光控两栖滚动运动。采用具有偶氮液晶聚合物网络(azo-LCN)条带纵横比变化的270°超扭曲向列分子几何结构,将偶氮苯功能化液晶聚合物网络(azo-LCN)从螺旋带设计为螺旋状螺旋。与具有质心移动的螺旋带azo-LCN的间歇和偏向滚动不同,螺旋状azo-LCN的轴向扭转扭矩能够以高转速(≈720 rpm)进行连续且直线的滚动。此外,引入了具有宽边缘的中心渐缩螺旋结构,以在保持方向可控性的同时有效加速光驱动。无论表面条件如何,中心渐缩螺旋状azo-LCN的光诱导旋转扭矩都可以传递到相互作用的表面,陡坡攀爬和桨状游泳等多模态运动就证明了这一点。最后,作者展示了软驱动器的连续曲线引导,通过实时按需光控绕过障碍物并到达期望的目的地。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3b78/10602523/faeecfb4981a/ADVS-10-2304715-g001.jpg

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