Suppr超能文献

结束语。

Concluding remarks.

作者信息

Myerson Allan S

机构信息

Massachusetts Institute of Technology - Chemical Engineering, 77 Massachusetts Avenue 66-568, Cambridge, Massachusetts 02139, USA.

出版信息

Faraday Discuss. 2015;179:543-7. doi: 10.1039/c5fd00042d. Epub 2015 May 18.

Abstract

Crystallization from solution is a crucial process used in the manufacture of a wide variety of materials. The first step in the crystallization process is the birth of a new crystalline phase, which is known as nucleation. Nucleation plays a key role in determining the results of any crystallization process with respect to the size, shape and crystal form obtained. Classical nucleation theory does not adequately explain the crystal nucleation process. Work described in the literature and at this Faraday Discussion describe more complex nucleation mechanisms which are generally known as two-step nucleation models. In addition, as most nucleation is influenced by dust, dirt and container surfaces, the importance of heterogeneous nucleation and the use of templates to accelerate nucleation and influence crystal form are promising methods for the study and control of nucleation. It is also clear from this Faraday Discussion that interest in this topic has grown, and new and novel experimental and modeling approaches are being used for the study of crystal nucleation from solution.

摘要

从溶液中结晶是制造各种材料所使用的关键过程。结晶过程的第一步是新晶相的诞生,这被称为成核。成核在决定任何结晶过程所获得的尺寸、形状和晶体形态的结果方面起着关键作用。经典成核理论并不能充分解释晶体成核过程。文献以及本次法拉第讨论中所描述的工作介绍了更复杂的成核机制,这些机制通常被称为两步成核模型。此外,由于大多数成核过程受灰尘、污垢和容器表面的影响,异相成核的重要性以及使用模板来加速成核并影响晶体形态是研究和成核控制的有前景的方法。从本次法拉第讨论中也可以清楚地看出,对该主题的兴趣在增加,并且正在使用新的和新颖的实验及建模方法来研究从溶液中结晶的过程。

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