Physical Chemistry Chemical Physics · 2015 · 113 citations · 46 references
The results of six high-precision constant energy molecular dynamics (MD) simulations initiated from methane-water systems equilibrated at 80 MPa and 250 K indicate that methane hydrates can nucleate via multiple pathways. Five trajectories nucleate to an amorphous solid. One trajectory nucleates to a structure-I hydrate template with long-range order which spans the simulation box across periodic boundaries despite the presence of several defects. While experimental and simulation data for hydrate nucleation with different time- and length-scales suggest that there may exist multiple pathways for nucleation, including metastable intermediates and the direct formation of the globally-stable phase, this work provides the most compelling evidence that direct formation to the globally stable crystalline phase is one of the multiple pathways available for hydrate nucleation.
46
VMD: Visual molecular dynamics
William Humphrey, Andrew Dalke, Klaus Schulten · Journal of Molecular Graphics · 1996 · 64.1K citations
Engineering, Visual Molecular Dynamics, Molecular Biology +5
A potential model for the study of ices and amorphous water: TIP4P/Ice
J. L. F. Abascal, Eduardo Sanz, Ramón Fernández et al. · The Journal of Chemical Physics · 2005 · 1.5K citations
Gas hydrates—geological perspective and global change
Keith A. Kvenvolden · Reviews of Geophysics · 1993 · 1.5K citations