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合成分子马达与机械装置。

Synthetic molecular motors and mechanical machines.

作者信息

Kay Euan R, Leigh David A, Zerbetto Francesco

机构信息

School of Chemistry, University of Edinburgh, The King's Buildings, West Mains Road, Edinburgh EH9 3JJ, UK.

出版信息

Angew Chem Int Ed Engl. 2007;46(1-2):72-191. doi: 10.1002/anie.200504313.

Abstract

The widespread use of controlled molecular-level motion in key natural processes suggests that great rewards could come from bridging the gap between the present generation of synthetic molecular systems, which by and large rely upon electronic and chemical effects to carry out their functions, and the machines of the macroscopic world, which utilize the synchronized movements of smaller parts to perform specific tasks. This is a scientific area of great contemporary interest and extraordinary recent growth, yet the notion of molecular-level machines dates back to a time when the ideas surrounding the statistical nature of matter and the laws of thermodynamics were first being formulated. Here we outline the exciting successes in taming molecular-level movement thus far, the underlying principles that all experimental designs must follow, and the early progress made towards utilizing synthetic molecular structures to perform tasks using mechanical motion. We also highlight some of the issues and challenges that still need to be overcome.

摘要

受控分子水平运动在关键自然过程中的广泛应用表明,弥合当代合成分子系统(目前主要依靠电子和化学效应来执行其功能)与宏观世界的机器(利用较小部件的同步运动来执行特定任务)之间的差距可能会带来巨大回报。这是一个当今极具吸引力且近期发展极为迅速的科学领域,然而分子水平机器的概念可追溯到围绕物质统计性质和热力学定律的思想首次形成的时期。在这里,我们概述了迄今为止在控制分子水平运动方面取得的令人兴奋的成功、所有实验设计必须遵循的基本原理,以及在利用合成分子结构通过机械运动执行任务方面取得的早期进展。我们还强调了一些仍需克服的问题和挑战。

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