The maximum interbubble distance in relation to the radius of spherical stable nanobubble in liquid water: A molecular dynamics study
Chemical Physics
2018-10-30 v2 Soft Condensed Matter
Abstract
The mechanism of superstability of nanobubbles in liquid confirmed by many experimental studies is still in debate since the classical diffusion predicts their lifetime on the order of a few microseconds. In this work, we study the requirement for bulk nanobubbles to be stable by using molecular dynamics simulations. Periodic cubic cells with different cell sizes and different initial radii are treated to simulate the nanobubble cluster, providing the equilibrium bubble radius and the interbubble distance. We find out that for nanobubble with a certain radius to be stable, the interbubble distance should be smaller than the maximum interbubble distance being proportional to .
Keywords
Cite
@article{arxiv.1807.02275,
title = {The maximum interbubble distance in relation to the radius of spherical stable nanobubble in liquid water: A molecular dynamics study},
author = {Song-Nam Hong and Song-Hyok Choe and Un-Gi Jong and Myong-San Pak and Chol-Jun Yu},
journal= {arXiv preprint arXiv:1807.02275},
year = {2018}
}