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A chemically powered unidirectional rotary molecular motor based on a palladium redox cycle

机译:基于钯氧化还原循环的化学动力单向旋转分子电动机

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The conversion of chemical energy to drive directional motion at the molecular level allows biological systems, ranging from subcellular components to whole organisms, to perform a myriad of dynamic functions and respond to changes in the environment. Directional movement has been demonstrated in artificial molecular systems, but the fundamental motif of unidirectional rotary motion along a single-bond rotary axle induced by metal-catalysed transformation of chemical fuels has not been realized, and the challenge is to couple the metal-centred redox processes to stepwise changes in conformation to arrive at a full unidirectional rotary cycle. Here, we present the design of an organopalladium-based motor and the experimental demonstration of a 360 degrees unidirectional rotary cycle using simple chemical fuels. Exploiting fundamental reactivity principles in organometallic chemistry enables control of directional rotation and offers the potential of harnessing the wealth of opportunities offered by transition-metal-based catalytic conversions to drive motion and dynamic functions.
机译:化学能的转换可以在分子水平上驱动方向运动,从而使生物系统(从亚细胞成分到整个生物)都可以执行各种动态功能,并对环境变化做出响应。在人工分子系统中已经证明了定向运动,但是尚未实现由金属催化的化学燃料转化引起的沿单键旋转轴的单向旋转运动的基本主题,而挑战在于耦合以金属为中心的氧化还原逐步改变构象以达到完整的单向旋转周期的过程。在这里,我们介绍了基于有机钯的电动机的设计以及使用简单化学燃料进行的360度单向旋转循环的实验演示。利用有机金属化学中的基本反应原理可以控制方向旋转,并提供了利用过渡金属基催化转化提供的大量机会来驱动运动和动力学功能的潜力。

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