1 |
On the prediction of critical temperatures of ionic liquids: Model development and evaluation Sattari M, Kamari A, Mohammadi AH, Ramjugernath D Fluid Phase Equilibria, 411, 24, 2016 |
2 |
Solubility modelling for phytochemicals of Misai Kucing in different solvents Theo WL, Mustaffa AA, Lim JS Fluid Phase Equilibria, 427, 246, 2016 |
3 |
A "non-linear" quantitative structure-property relationship for the prediction of electrical conductivity of ionic liquids Gharagheizi F, Sattari M, Ilani-Kashkouli P, Mohammadi AH, Ramjugernath D, Richon D Chemical Engineering Science, 101, 478, 2013 |
4 |
Quantitative structure-property relationship for thermal decomposition temperature of ionic liquids Gharagheizi F, Sattari M, Ilani-Kashkouli P, Mohammadi AH, Ramjugernath D, Richon D Chemical Engineering Science, 84, 557, 2012 |
5 |
Ionic liquids: Prediction of melting point by molecular-based model Farahani N, Gharagheizi F, Mirkhani SA, Tumba K Thermochimica Acta, 549, 17, 2012 |
6 |
QSPR prediction of N-boiling point and critical properties of organic compounds and comparison with a group-contribution method Sola D, Ferri A, Banchero M, Manna L, Sicardi S Fluid Phase Equilibria, 263(1), 33, 2008 |
7 |
Accurate predictions of cellular response using QSPR: a feasibility test of rational design of polymeric biomaterials Kholodovych V, Smith JR, Knight D, Abramson S, Kohn J, Welsh WJ Polymer, 45(22), 7367, 2004 |
8 |
A QSPR study of infinite dilution activity coefficients of organic compounds in aqueous solutions He JT, Zhong CL Fluid Phase Equilibria, 205(2), 303, 2003 |