首页> 外文期刊>The Journal of Chemical Physics >Directional fidelity of nanoscale motors and particles is limited by the 2nd law of thermodynamics—Via a universal equality
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Directional fidelity of nanoscale motors and particles is limited by the 2nd law of thermodynamics—Via a universal equality

机译:纳米级电动机和粒子的方向保真度受热力学第二定律的限制-通过普遍等式

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摘要

Directional motion of nanoscale motors and driven particles in an isothermal environment costs a finite amount of energy despite zero work as decreed by the 2nd law, but quantifying this general limit remains difficult. Here we derive a universal equality linking directional fidelity of an arbitrary nanoscale object to the least possible energy driving it. The fidelity-energy equality depends on the environmental temperature alone; any lower energy would violate the 2nd law in a thought experiment. Real experimental proof for the equality comes from force-induced motion of biological nanomotors by three independent groups – for translational as well as rotational motion. Interestingly, the natural self-propelled motion of a biological nanomotor (F1-ATPase) known to have nearly 100% energy efficiency evidently pays the 2nd law decreed least energy cost for direction production.
机译:尽管第二定律规定零功,但等温环境中的纳米级电动机和被驱动粒子的定向运动会消耗有限的能量,但是量化此一般限制仍然很困难。在这里,我们得出了一个通用等式,它将任意纳米级物体的方向保真度与驱动它的最小可能能量联系在一起。保真度-能量均等性仅取决于环境温度。在思想实验中,任何较低的能量都会违反第二定律。相等性的真正实验证据来自三个独立的小组对生物纳米马达的力感应运动-平移运动和旋转运动。有趣的是,已知具有近100%的能源效率的生物纳米马达(F1-ATPase)的自然自推进运动显然会支付第二定律,从而降低了定向生产所需的最低能源成本。

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