English

Molecular simulations of heterogeneous ice nucleation. I. Controlling ice nucleation through surface hydrophilicity

Materials Science 2015-06-01 v2 Soft Condensed Matter

Abstract

Ice formation is one of the most common and important processes on earth and almost always occurs at the surface of a material. A basic understanding of how the physicochemical properties of a material's surface affect its ability to form ice has remained elusive. Here, we use molecular dynamics simulations to directly probe heterogeneous ice nucleation at a hexagonal surface of a nanoparticle of varying hydrophilicity. Surprisingly, we find that structurally identical surfaces can both inhibit and promote ice formation and analogous to a chemical catalyst, it is found that an optimal interaction between the surface and the water exists for promoting ice nucleation. We use our microscopic understanding of the mechanism to design a modified surface in silico with enhanced ice nucleating ability.

Keywords

Cite

@article{arxiv.1501.01879,
  title  = {Molecular simulations of heterogeneous ice nucleation. I. Controlling ice nucleation through surface hydrophilicity},
  author = {Stephen J. Cox and Shawn M. Kathmann and Ben Slater and Angelos Michaelides},
  journal= {arXiv preprint arXiv:1501.01879},
  year   = {2015}
}

Comments

5 pages; 3 figures; Title changed from previous version on arXiv