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强健的动力学。

Robust dynamics.

机构信息

Center for Reticular Chemistry, Department of Chemistry and Biochemistry, University of California, Los Angeles, California 90095, USA.

出版信息

Nat Chem. 2010 Jun;2(6):439-43. doi: 10.1038/nchem.654. Epub 2010 May 16.

Abstract

Although metal-organic frameworks are extensive in number and have found widespread applications, there remains a need to add complexity to their structures in a controlled manner. It is inevitable that frameworks capable of dynamics will be required. However, as in other extended structures, when they are flexible, they fail. We propose that mechanically interlocked molecules be inserted covalently into the rigid framework backbone such that they are mounted as integrated components, capable of dynamics, without compromising the fidelity of the entire system. We have coined the term 'robust dynamics' to describe constructs where the repeated dynamics of one entity does not affect the integrity of any others linked to it. The implication of this concept for dynamic molecules, whose performance has the disadvantages of random motion, is to bring them to a standstill in three-dimensional extended structures and thus significantly enhance their order, and ultimately their coherence and performance.

摘要

尽管金属有机骨架的数量众多,并且已经得到了广泛的应用,但仍需要以可控的方式为其结构增加复杂性。需要具有动态能力的框架是不可避免的。然而,与其他扩展结构一样,当它们具有柔韧性时,它们会失效。我们建议将机械互锁分子共价插入刚性框架主链中,使其作为集成组件安装,能够动态而不影响整个系统的保真度。我们创造了“稳健动力学”一词来描述这样的结构,其中一个实体的重复动力学不会影响与之相连的任何其他实体的完整性。对于动态分子的这一概念的含义是,将它们在三维扩展结构中静止下来,从而显著提高它们的有序性,最终提高它们的相干性和性能。

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