paper

Methane hydrate nucleation frustration and dimensional reduction of structural order under nanoconfinement

arXiv:2605.14533

Abstract

Methane hydrate nucleation under nanoconfinement remains poorly understood due to the complex interplay between geometric restriction and molecular ordering. Here, we investigate the structural organization of water-methane systems confined between silica planar slit pores with widths ranging from 1 to 5 nm and temperatures between 250 and 295 K. Three-dimensional radial distribution functions reveal a clear suppression of hydrate-like ordering at strong confinement (below 2 nm), indicating frustrated nucleation. In contrast, projected two-dimensional correlations exhibit pronounced in-plane structural organization, evidencing a confinement-induced reduction in the dimensionality of molecular order.

4 pages , 3 figures

Methane hydrate nucleation frustration and dimensional reduction of structural order under nanoconfinement · wovepaper