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受限空间中的结晶。

Crystallization in Confinement.

机构信息

School of Chemistry, University of Leeds, Woodhouse Lane, Leeds, LS2 9JT, UK.

出版信息

Adv Mater. 2020 Aug;32(31):e2001068. doi: 10.1002/adma.202001068. Epub 2020 Jun 25.

Abstract

Many crystallization processes of great importance, including frost heave, biomineralization, the synthesis of nanomaterials, and scale formation, occur in small volumes rather than bulk solution. Here, the influence of confinement on crystallization processes is described, drawing together information from fields as diverse as bioinspired mineralization, templating, pharmaceuticals, colloidal crystallization, and geochemistry. Experiments are principally conducted within confining systems that offer well-defined environments, varying from droplets in microfluidic devices, to cylindrical pores in filtration membranes, to nanoporous glasses and carbon nanotubes. Dramatic effects are observed, including a stabilization of metastable polymorphs, a depression of freezing points, and the formation of crystals with preferred orientations, modified morphologies, and even structures not seen in bulk. Confinement is also shown to influence crystallization processes over length scales ranging from the atomic to hundreds of micrometers, and to originate from a wide range of mechanisms. The development of an enhanced understanding of the influence of confinement on crystal nucleation and growth will not only provide superior insight into crystallization processes in many real-world environments, but will also enable this phenomenon to be used to control crystallization in applications including nanomaterial synthesis, heavy metal remediation, and the prevention of weathering.

摘要

许多重要的结晶过程,包括冻胀、生物矿化、纳米材料的合成和结垢,都是在小体积而不是在大量溶液中发生的。本文描述了约束对结晶过程的影响,汇集了仿生矿化、模板、药物、胶体结晶和地球化学等领域的信息。实验主要在具有明确定义环境的约束系统中进行,范围从微流控装置中的液滴到过滤膜中的圆柱形孔,再到纳米多孔玻璃和碳纳米管。观察到了显著的影响,包括亚稳多晶型的稳定化、冰点的降低以及具有优先取向、改进形态的晶体的形成,甚至形成了在大量溶液中看不到的结构。约束还被证明会影响从原子到数百微米的长度尺度上的结晶过程,并源自广泛的机制。增强对约束对晶体成核和生长影响的理解,不仅将提供对许多实际环境中结晶过程的卓越洞察力,还将使这种现象能够用于控制纳米材料合成、重金属修复和防止风化等应用中的结晶。

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