Methanol: Difference between revisions
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'''Methanol''' (CH<sub>3</sub>OH) | '''Methanol''' (CH<sub>3</sub>OH) | ||
==Phase diagram== | ==Phase diagram== | ||
The phase diagram for methanol using the [[OPLS force field]] parameters has been calculated by Gonzalez Salgado and Vega <ref>[http://dx.doi.org/10.1063/1.3328667 D. Gonzalez Salgado and C. Vega "Melting point and phase diagram of methanol as obtained from computer simulations of the OPLS model", Journal of chemical Physics '''132''' 094505 (2010)]</ref>. | The [[Phase diagrams | phase diagram]] ([[Phase diagrams: Pressure-temperature plane |pressure-temperature plane]]) for methanol using the [[OPLS force field]] parameters has been calculated by Gonzalez Salgado and Vega <ref>[http://dx.doi.org/10.1063/1.3328667 D. Gonzalez Salgado and C. Vega "Melting point and phase diagram of methanol as obtained from computer simulations of the OPLS model", Journal of chemical Physics '''132''' 094505 (2010)]</ref>. The melting point at room [[pressure]] for this [[Realistic models |model]] is 215 K. | ||
==References== | ==References== | ||
<references/> | <references/> |
Revision as of 11:09, 8 March 2010
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Methanol (CH3OH)
Phase diagram
The phase diagram (pressure-temperature plane) for methanol using the OPLS force field parameters has been calculated by Gonzalez Salgado and Vega [1]. The melting point at room pressure for this model is 215 K.
References
Related reading
- Samantha Weerasinghe and Paul E. Smith "A Kirkwood−Buff Derived Force Field for Methanol and Aqueous Methanol Solutions", Journal of Physical Chemistry B 109 pp. 15080–15086 (2005)
- D. Costa, G. Munaó, F. Saija and C. Caccarno "Reference interaction site model and molecular dynamics study of structure and thermodynamics of methanol", Journal of Chemical Physics 127 224501 (2007)
- Maximiliano Valdéz-González, Humberto Saint-Martin, Jorge Hernández-Cobos, Regla Ayala, Enrique Sanchez-Marcos, and Ivan Ortega-Blake "Liquid methanol Monte Carlo simulations with a refined potential which includes polarizability, nonadditivity, and intramolecular relaxation", Journal of Chemical Physics 127 224507 (2007)
- Alina Ciach and Aurélien Perera "A simple lattice model for the microstructure of neat alcohols: Application to liquid methanol", Journal of Chemical Physics 131 044505 (2009)