运动(物理)
物理
绕固定轴旋转
计算机科学
平移运动
运动控制
人工智能
计算机视觉
控制理论(社会学)
噪音(视频)
工作(物理)
经典力学
工程类
控制系统
机器人学
旋转(数学)
动作(物理)
加速度
作者
Shilong Zhang,Yongmei Chai,Guofu Zhou,Hong Liu,Yan Wang,Ben L. Feringa,Jiawen Chen
出处
期刊:CCS Chemistry
[Chinese Chemical Society]
日期:2025-12-18
卷期号:8 (1): 282-292
标识
DOI:10.31635/ccschem.025.202506834
摘要
Molecular machines bring the mechanical world to nanoscale dimensions and, reminiscent of biological machines, allow directional movement and precise dynamic and adaptive functions. Transmission and coupling of distinct motions are essential for future advanced nanomachinelike operations, but the control of translational motion by rotary motion remains highly challenging. Here we show that two distinct types of motion with large amplitude are integrated in one single molecular machine. A rotaxane shuttling system, with a molecular rotary motor intrinsic to its axle, enables light-powered rotary motion which significantly affects the translational motion of the ring both regarding speed of linear movement and shuttling directions. The dynamic control of two distinct motions is due to the geometrical changes during the motor’s rotation as both steric hindrance and non-covalent interactions between the motor unit and the shuttling ring change upon rotation powered by light. In-depth computational studies support the mechanism of how shuttling of the ring is affected by rotation of the motor. These findings represent an important milestone towards the future design of complex synthetic molecular machines with integrated mechanical functions.
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