Hall Kyle Wm, Zhang Zhengcai, Burnham Christian J, Guo Guang-Jun, Carpendale Sheelagh, English Niall J, Kusalik Peter G
Department of Chemistry , University of Calgary , Calgary , Alberta T2N 1N4 , Canada.
Department of Computer Science , University of Calgary , Calgary , Alberta T2N 1N4 , Canada.
J Phys Chem Lett. 2018 Dec 20;9(24):6991-6998. doi: 10.1021/acs.jpclett.8b03115. Epub 2018 Dec 3.
The broad scientific and technological importance of crystallization has led to significant research probing and rationalizing crystal nucleation processes. Previous work has generally neglected the possibility of the molecular-level dynamics of individual crystal nuclei coupling to local structures. However, recent experimental work has conjectured that this can occur. Therefore, to address a deficiency in scientific understanding of crystallization, we have probed the nucleation of prototypical single and multicomponent crystals (specifically, ice and mixed gas hydrates). We establish that local structures can bias the evolution of nascent crystal phases on a nanosecond time scale by, for example, promoting the appearance or disappearance of specific crystal motifs and thus reveal a new facet of crystallization behavior. Moreover, we demonstrate structural biases are likely present during crystallization processes beyond ice and gas hydrate formation. Structurally biased dynamics are a lens for understanding existing computational and experimental results while pointing to future opportunities.
结晶在广泛的科学技术领域具有重要意义,这引发了大量对晶体成核过程进行探究和合理化解释的研究。以往的工作通常忽略了单个晶核的分子水平动力学与局部结构耦合的可能性。然而,最近的实验工作推测这种情况可能会发生。因此,为了弥补对结晶科学理解上的不足,我们研究了典型的单组分和多组分晶体(具体来说,冰和混合气体水合物)的成核过程。我们确定,局部结构可以在纳秒时间尺度上影响新生晶相的演化,例如,通过促进特定晶体结构单元的出现或消失,从而揭示了结晶行为的一个新方面。此外,我们证明在冰和气体水合物形成之外的结晶过程中可能也存在结构偏差。结构偏差动力学是理解现有计算和实验结果的一个视角,同时也指出了未来的机遇。