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有机晶体成核——分子视角。

Nucleation of organic crystals--a molecular perspective.

机构信息

School of Chemical Engineering and Analytical Sciences, University of Manchester, The Mill, Sackville Street, Manchester M13 9PL, UK.

出版信息

Angew Chem Int Ed Engl. 2013 Feb 18;52(8):2166-79. doi: 10.1002/anie.201204824. Epub 2013 Jan 10.

Abstract

The outcome of synthetic procedures for crystalline organic materials strongly depends on the first steps along the molecular self-assembly pathway, a process we know as crystal nucleation. New experimental techniques and computational methodologies have spurred significant interest in understanding the detailed molecular mechanisms by which nuclei form and develop into macroscopic crystals. Although classical nucleation theory (CNT) has served well in describing the kinetics of the processes involved, new proposed nucleation mechanisms are additionally concerned with the evolution of structure and the competing nature of crystallization in polymorphic systems. In this Review, we explore the extent to which CNT and nucleation rate measurements can yield molecular-scale information on this process and summarize current knowledge relating to molecular self-assembly in nucleating systems.

摘要

结晶有机材料的合成过程的结果强烈依赖于分子自组装途径上的最初步骤,这个过程我们称之为晶体成核。新的实验技术和计算方法激发了人们极大的兴趣,以了解核形成并发展成宏观晶体的详细分子机制。尽管经典成核理论 (CNT) 在描述所涉及过程的动力学方面表现良好,但新提出的成核机制还涉及到结构演变和多晶体系中结晶的竞争性质。在这篇综述中,我们探讨了 CNT 和成核速率测量在多大程度上可以提供关于该过程的分子尺度信息,并总结了与成核体系中分子自组装相关的现有知识。

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