Diffusion is one of the key subjects of molecular modeling and simulation studies. However, there is an unresolved lack of consistency between Einstein-Smoluchowski (E-S) and Green-Kubo (G-K) methods for diffusion coefficient calculations in systems of complex molecules. In this paper, we analyze this problem for the case of liquid n-triacontane. The non-conventional long-time tails of the velocity autocorrelation function (VACF) are found for this system. Temperature dependence of the VACF tail decay exponent is defined. The proper inclusion of the long-time tail contributions to the diffusion coefficient calculation results in the consistency between G-K and E-S methods. Having considered the major factors influencing the precision of the diffusion rate calculations in comparison with experimental data (system size effects and force field parameters), we point to hydrogen nuclear quantum effects as, presumably, the last obstacle to fully consistent n-alkane description.
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28 November 2016
Research Article|
November 23 2016
Self-consistent molecular dynamics calculation of diffusion in higher n-alkanes
Nikolay D. Kondratyuk;
Nikolay D. Kondratyuk
a)
1
Joint Institute for High Temperatures of the Russian Academy of Sciences
, Moscow 125412, Russia
2
Moscow Institute of Physics and Technology
, Dolgoprudny 141700, Russia
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Genri E. Norman;
Genri E. Norman
1
Joint Institute for High Temperatures of the Russian Academy of Sciences
, Moscow 125412, Russia
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Vladimir V. Stegailov
Vladimir V. Stegailov
1
Joint Institute for High Temperatures of the Russian Academy of Sciences
, Moscow 125412, Russia
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a)
Email: kondratyuk@phystech.edu
J. Chem. Phys. 145, 204504 (2016)
Article history
Received:
September 12 2016
Accepted:
November 02 2016
Citation
Nikolay D. Kondratyuk, Genri E. Norman, Vladimir V. Stegailov; Self-consistent molecular dynamics calculation of diffusion in higher n-alkanes. J. Chem. Phys. 28 November 2016; 145 (20): 204504. https://doi.org/10.1063/1.4967873
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