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胶体模型悬浮液的结晶动力学:近期成果与新展望。

Crystallization kinetics of colloidal model suspensions: recent achievements and new perspectives.

作者信息

Palberg Thomas

机构信息

Institut für Physik, Johannes Gutenberg Universität Mainz, 55099 Mainz, Germany.

出版信息

J Phys Condens Matter. 2014 Aug 20;26(33):333101. doi: 10.1088/0953-8984/26/33/333101. Epub 2014 Jul 18.

DOI:10.1088/0953-8984/26/33/333101
PMID:25035303
Abstract

Colloidal model systems allow studying crystallization kinetics under fairly ideal conditions, with rather well-characterized pair interactions and minimized external influences. In complementary approaches experiment, analytic theory and simulation have been employed to study colloidal solidification in great detail. These studies were based on advanced optical methods, careful system characterization and sophisticated numerical methods. Over the last decade, both the effects of the type, strength and range of the pair-interaction between the colloidal particles and those of the colloid-specific polydispersity have been addressed in a quantitative way. Key parameters of crystallization have been derived and compared to those of metal systems. These systematic investigations significantly contributed to an enhanced understanding of the crystallization processes in general. Further, new fundamental questions have arisen and (partially) been solved over the last decade: including, for example, a two-step nucleation mechanism in homogeneous nucleation, choice of the crystallization pathway, or the subtle interplay of boundary conditions in heterogeneous nucleation. On the other hand, via the application of both gradients and external fields the competition between different nucleation and growth modes can be controlled and the resulting microstructure be influenced. The present review attempts to cover the interesting developments that have occurred since the turn of the millennium and to identify important novel trends, with particular focus on experimental aspects.

摘要

胶体模型系统能够在相当理想的条件下研究结晶动力学,其具有相当明确的成对相互作用,且外部影响最小化。在互补的方法中,实验、解析理论和模拟已被用于详细研究胶体固化。这些研究基于先进的光学方法、细致的系统表征和复杂的数值方法。在过去十年中,胶体颗粒之间成对相互作用的类型、强度和范围的影响以及胶体特定多分散性的影响都已得到定量研究。已经推导了结晶的关键参数,并与金属系统的参数进行了比较。这些系统研究显著促进了对一般结晶过程的深入理解。此外,在过去十年中出现了一些新的基本问题并(部分)得到了解决:例如,包括均匀成核中的两步成核机制、结晶途径的选择或异质成核中边界条件的微妙相互作用。另一方面,通过应用梯度和外部场,可以控制不同成核和生长模式之间的竞争,并影响所得的微观结构。本综述试图涵盖自千禧年之交以来发生的有趣进展,并确定重要的新趋势,特别关注实验方面。

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