Woo Hyung-June, Monson P A
Department of Chemical Engineering, University of Massachusetts, Amherst 01003, USA.
Phys Rev E Stat Nonlin Soft Matter Phys. 2003 Apr;67(4 Pt 1):041207. doi: 10.1103/PhysRevE.67.041207. Epub 2003 Apr 28.
Equilibrium and dynamical relaxation behavior of fluids confined in disordered mesoporous glasses such as Vycor are studied based on a lattice model using mean field theory and Monte Carlo simulations. Preferential attractive interactions between the solid surfaces and the fluid suppresses macroscopic phase separation, while making the relaxation rate increasingly slow. The free energy landscape characterized by the presence of the many metastable minima separated by finite barriers dominates both the static and dynamic behavior of fluids at low temperature. Our results provide additional insight into the nature of hysteresis in adsorption measurements of gases in porous glasses.
基于晶格模型,采用平均场理论和蒙特卡罗模拟,研究了诸如Vycor等无序介孔玻璃中受限流体的平衡和动态弛豫行为。固体表面与流体之间的优先吸引相互作用抑制了宏观相分离,同时使弛豫速率越来越慢。以存在由有限势垒分隔的许多亚稳极小值为特征的自由能景观主导了低温下流体的静态和动态行为。我们的结果为多孔玻璃中气体吸附测量中的滞后现象的本质提供了更多的见解。