Methanol: Difference between revisions

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*[http://dx.doi.org/10.1063/1.4778596  Paula Gómez-Álvarez, Luis Romaní, and Diego González-Salgado "Association effects in pure methanol via Monte Carlo simulations. I. Structure", Journal of Chemical Physics '''138''' 044509 (2013)]
*[http://dx.doi.org/10.1063/1.4778596  Paula Gómez-Álvarez, Luis Romaní, and Diego González-Salgado "Association effects in pure methanol via Monte Carlo simulations. I. Structure", Journal of Chemical Physics '''138''' 044509 (2013)]
*[http://dx.doi.org/10.1063/1.4778680  Paula Gómez-Álvarez, Luis Romaní, and Diego González-Salgado  "Association effects in pure methanol via Monte Carlo simulations. II. Thermodynamics", Journal of Chemical Physics '''138''' 044510 (2013)]
*[http://dx.doi.org/10.1063/1.4778680  Paula Gómez-Álvarez, Luis Romaní, and Diego González-Salgado  "Association effects in pure methanol via Monte Carlo simulations. II. Thermodynamics", Journal of Chemical Physics '''138''' 044510 (2013)]
*[http://dx.doi.org/10.1063/1.4899316  Matej Huš, Gianmarco Munaò and Tomaz Urbic "Properties of a soft-core model of methanol: An integral equation theory and computer simulation study", Journal of Chemical Physics '''141''' 164505 (2014)]


[[category: models]]
[[category: models]]
[[category: Contains Jmol]]
[[category: Contains Jmol]]

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Methanol

Methanol (CH3OH)

Models

Jorgensen model

[1]

Leeuwen-Smit model

L1[2]

Virial coefficients

The virial coefficients for various models of methanol have been calculated using Mayer sampling Monte Carlo [3].

Phase diagram

The phase diagram (pressure-temperature plane) for methanol using the OPLS force field parameters has been calculated by Gonzalez Salgado and Vega [4]. The melting point at room pressure for this model is 215 K.

References

Related reading