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Crystalline molecular machines: Encoding supramolecular dynamics into molecular structure

机译:结晶分子机器:将超分子动力学编码为分子结构

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摘要

Crystalline molecular machines represent an exciting new branch of crystal engineering and materials science with important implica-tions to nanotechnology. Crystalline molecular machines are crystals built with molecules that are structurally programmed to respond collectively to mechanic, electric, magnetic, or photonic stimuli to fulfill specific functions. One of the main challenges in their construction derives from the picometric precision required for their mechanic operation within the close-packed, self-assembled environment of crystalline solids. In this article, we outline some of the general guidelines for their design and apply them for the construction of molecular crystals with units intended to emulate macroscopic gyroscopes and compasses. Recent advances in the preparation, crystallization, and dynamic characterization of these interesting systems offer a foothold to the possibilities and help highlight some avenues for future experimentation.
机译:晶体分子机器代表了晶体工程和材料科学的一个令人振奋的新分支,对纳米技术具有重要意义。晶体分子机器是由分子构成的晶体,这些分子在结构上经过编程,可以共同响应机械,电,磁或光子刺激,以实现特定功能。它们的构造中的主要挑战之一来自其在密闭的,自组装的结晶固体环境中的机械操作所需的象形精度。在本文中,我们概述了有关其设计的一些一般准则,并将其应用于分子晶体的构造,其单位旨在模拟宏观陀螺仪和罗盘。这些有趣的系统在制备,结晶和动态表征方面的最新进展为这些可能性提供了立足之地,并有助于突出一些将来进行实验的途径。

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