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利用分子模拟和增强采样技术对表面冰亲合性进行表征。

Characterizing Surface Ice-Philicity Using Molecular Simulations and Enhanced Sampling.

机构信息

Department of Chemical and Biomolecular Engineering, University of Pennsylvania, Philadelphia, Pennsylvania 19104, United States.

出版信息

J Phys Chem B. 2023 Jul 13;127(27):6125-6135. doi: 10.1021/acs.jpcb.3c01627. Epub 2023 Jun 28.

Abstract

The formation of ice, which plays an important role in diverse contexts ranging from cryopreservation to atmospheric science, is often mediated by solid surfaces. Although surfaces that interact favorably with ice (relative to liquid water) can facilitate ice formation by lowering nucleation barriers, the molecular characteristics that confer icephilicity to a surface are complex and incompletely understood. To address this challenge, here we introduce a robust and computationally efficient method for characterizing surface ice-philicity that combines molecular simulations and enhanced sampling techniques to quantify the free energetic cost of increasing surface-ice contact at the expense of surface-water contact. Using this method to characterize the ice-philicity of a family of model surfaces that are lattice matched with ice but vary in their polarity, we find that the nonpolar surfaces are moderately ice-phobic, whereas the polar surfaces are highly ice-philic. In contrast, for surfaces that display no complementarity to the ice lattice, we find that ice-philicity is independent of surface polarity and that both nonpolar and polar surfaces are moderately ice-phobic. Our work thus provides a prescription for quantitatively characterizing surface ice-philicity and sheds light on how ice-philicity is influenced by lattice matching and polarity.

摘要

冰的形成在从低温保存到大气科学等各种领域都起着重要作用,通常是由固体表面介导的。虽然与冰(相对于液态水)相互作用良好的表面可以通过降低成核势垒来促进冰的形成,但赋予表面冰亲性的分子特征是复杂且尚未完全理解的。为了应对这一挑战,我们在这里引入了一种强大且计算效率高的方法来表征表面冰亲性,该方法结合了分子模拟和增强采样技术,以量化增加表面-冰接触而不是表面-水接触的自由能成本。使用这种方法来表征与冰晶格匹配但极性不同的一系列模型表面的冰亲性,我们发现非极性表面对冰有一定的排斥性,而极性表面则对冰有很强的亲合性。相比之下,对于与冰晶格不互补的表面,我们发现冰亲合性与表面极性无关,非极性和极性表面都对冰有一定的排斥性。因此,我们的工作为定量表征表面冰亲性提供了一种方法,并阐明了冰亲性如何受到晶格匹配和极性的影响。

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