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超分子体系化学。

Supramolecular systems chemistry.

机构信息

Centre for Systems Chemistry, Stratingh Institute, University of Groningen, Nijenborgh 4, 9747AG Groningen, The Netherlands.

出版信息

Nat Nanotechnol. 2015 Feb;10(2):111-9. doi: 10.1038/nnano.2014.337.

Abstract

The field of supramolecular chemistry focuses on the non-covalent interactions between molecules that give rise to molecular recognition and self-assembly processes. Since most non-covalent interactions are relatively weak and form and break without significant activation barriers, many supramolecular systems are under thermodynamic control. Hence, traditionally, supramolecular chemistry has focused predominantly on systems at equilibrium. However, more recently, self-assembly processes that are governed by kinetics, where the outcome of the assembly process is dictated by the assembly pathway rather than the free energy of the final assembled state, are becoming topical. Within the kinetic regime it is possible to distinguish between systems that reside in a kinetic trap and systems that are far from equilibrium and require a continuous supply of energy to maintain a stationary state. In particular, the latter systems have vast functional potential, as they allow, in principle, for more elaborate structural and functional diversity of self-assembled systems - indeed, life is a prime example of a far-from-equilibrium system. In this Review, we compare the different thermodynamic regimes using some selected examples and discuss some of the challenges that need to be addressed when developing new functional supramolecular systems.

摘要

超分子化学领域专注于分子间的非共价相互作用,这些相互作用导致分子识别和自组装过程。由于大多数非共价相互作用相对较弱,并且在没有显著活化能垒的情况下形成和断裂,因此许多超分子体系处于热力学控制之下。因此,传统上,超分子化学主要集中在平衡体系上。然而,最近,由动力学控制的自组装过程变得越来越重要,其中组装过程的结果取决于组装途径,而不是最终组装态的自由能。在动力学范围内,可以区分处于动力学陷阱中的体系和远离平衡且需要连续供应能量以维持稳定状态的体系。特别是,后者系统具有巨大的功能潜力,因为它们原则上允许自组装系统具有更精细的结构和功能多样性——事实上,生命就是远离平衡系统的一个主要例子。在这篇综述中,我们使用一些选定的例子比较了不同的热力学体系,并讨论了在开发新的功能超分子体系时需要解决的一些挑战。

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