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Exploring non-equilibrium molecular dynamics of mobile protons in the solid acid CsH2PO4 at the micrometer and microsecond scale.

Authors :
Dreßler, Christian
Kabbe, Gabriel
Brehm, Martin
Sebastiani, Daniel
Source :
Journal of Chemical Physics; 4/30/2020, Vol. 152 Issue 16, p1-13, 13p, 2 Color Photographs, 3 Diagrams, 1 Chart, 8 Graphs
Publication Year :
2020

Abstract

We explicitly compute the non-equilibrium molecular dynamics of protons in the solid acid CsH<subscript>2</subscript>PO<subscript>4</subscript> on the micrometer length scale via a multiscale Markov model: The molecular dynamics/matrix propagation (MDM) method. Within the MDM approach, the proton dynamics information of an entire molecular dynamics simulation can be condensed into a single M × M matrix (M is the number of oxygen atoms in the simulated system). Due to this drastic reduction in the complexity, we demonstrate how to increase the length and time scales in order to enable the simulation of inhomogeneities of CsH<subscript>2</subscript>PO<subscript>4</subscript> systems at the nanometer scale. We incorporate explicit correlation of protonation dynamics with the protonation state of the neighboring proton sites and illustrate that this modification conserves the Markov character of the MDM method. We show that atomistic features such as the mean square displacement and the diffusion coefficient of the protons can be computed quantitatively from the matrix representation. Furthermore, we demonstrate the application potential of the scheme by computing the explicit dynamics of a non-equilibrium process in an 8 μm CsH<subscript>2</subscript>PO<subscript>4</subscript> system during 5 ms. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219606
Volume :
152
Issue :
16
Database :
Complementary Index
Journal :
Journal of Chemical Physics
Publication Type :
Academic Journal
Accession number :
143006627
Full Text :
https://doi.org/10.1063/5.0002167