English

Naphthalene crystal shape prediction from molecular dynamics simulations

Chemical Physics 2019-04-17 v1 Computational Physics

Abstract

We used molecular dynamics simulations to predict the steady state crystal shape of naphthalene grown from ethanol solution. The simulations were performed at constant supersaturation by utilizing a recently proposed algorithm [Perego et al., J. Chem. Phys., 142, 2015, 144113]. To bring the crystal growth within the timescale of a molecular dynamics simulation we applied Well-Tempered Metadynamics with a spatially constrained collective variable, which focuses the sampling on the growing layer. We estimated that the resulting steady state crystal shape corresponds to a rhombic prism, which is in line with experiments. Further, we observed that at the investigated supersaturations, the {001ˉ}\{00\bar{1}\} face grows in a two step two dimensional nucleation mechanism while the considerably faster growing faces {11ˉ0}\{1\bar{1}0\} and {201ˉ}\{20\bar{1}\} grow new layers with a one step two dimensional nucleation mechanism.

Keywords

Cite

@article{arxiv.1904.07337,
  title  = {Naphthalene crystal shape prediction from molecular dynamics simulations},
  author = {Zoran Bjelobrk and Pablo M. Piaggi and Thilo Weber and Tarak Karmakar and Marco Mazzotti and Michele Parrinello},
  journal= {arXiv preprint arXiv:1904.07337},
  year   = {2019}
}
R2 v1 2026-06-23T08:40:29.623Z