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首页> 外文期刊>The Journal of Organic Chemistry >Light and Chemically Driven Molecular Machines Showing a Unidirectional Four-State Switching Cycle
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Light and Chemically Driven Molecular Machines Showing a Unidirectional Four-State Switching Cycle

机译:光和化学驱动分子机器显示出单向四态开关周期

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摘要

The imitation of macroscopic movements at the molecular level is a key step in the development of nanomachines. The challenge is the synthesis of molecules that are able to transform external stimuli into a direction-controlled mechanical movement. The more complex such motion sequences are, the more difficult is the construction of the corresponding nanomachine. Here, we present a system that demonstrates a unidirectional, four-state switching cycle that bears similar characteristics to the arm movements of a human breaststroke swimmer. Like the latter, the molecules have a torso and two arms. The arms consist of bipyridine units and can be folded and stretched by addition and removal of copper ions. The unidirectional rotation of the arms is achieved by light-induced switching of an azo unit.
机译:在分子水平上模仿宏观运动是纳米机器发展的关键步骤。挑战在于如何将外部刺激转换为方向受控的机械运动的分子合成。这样的运动序列越复杂,相应的纳米机器的构造就越困难。在这里,我们提出了一个系统,该系统演示了单向四态切换循环,该循环具有与人类蛙泳游泳者手臂运动相似的特征。像后者一样,分子具有躯干和两个臂。臂由联吡啶单元组成,可通过添加和去除铜离子折叠和拉伸。臂的单向旋转是通过偶氮单元的光感应开关来实现的。

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