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  1. Lattice mold technique for the calculation of crystal nucleation rates.
    J.R.Espinosa,P.Sampedro,C.Valeriani,C.Vega y E.Sanz
    Faraday Discussions 195 569 (2016)
  2. On the time required to freeze water
    J.R.Espinosa,C.Navarro,E.Sanz,C.Valeriani and C.Vega
    J.Chem.Phys. 145 211922 (2016)
  3. On the calculation of solubilities via direct coexistence simulations: Investigation of NaCl aqueous solutions and Lennard-Jones binary mixtures
    J.R.Espinosa,J.M.Young,H.Jiang,D.Gupta,C.Vega,E.Sanz,P.G.Debenedetti and A.Z.Panagiotopoulos
    J.Chem.Phys. 145 154111 (2016)
  4. Interfacial Free Energy as the Key to the Pressure-Induced Deceleration of Ice Nucleation
    J.R.Espinosa,A. Zaragoza,P. Rosales-Pelaez,C. Navarro,C. Valeriani,C. Vega and E. Sanz
    Phys. Rev. Lett. 117 135702 (2016)
  5. A new intermolecular potential for simulations of methanol: The OPLS/2016 model
    D. Gonzalez-Salgado and C. Vega
    J. Chem. Phys. 145 034508 (2016)
  6. Ice–Water Interfacial Free Energy for the TIP4P, TIP4P/2005, TIP4P/Ice, and mW Models As Obtained from the Mold Integration Technique
    J. R. Espinosa, C. Vega and E. Sanz
    J. Phys. Chem. C 120 8068 (2016)
  7. Consensus on the solubility of NaCl in water from computer simulations using the chemical potential route
    A. L. Benavides, J. L. Aragones and C. Vega
    J. Chem. Phys. 144 124504 (2016)
  8. Water: A Tale of Two Liquids
    P. Gallo, K. Amann-Winkel, C. A. Angell, M. A. Anisimov, F. Caupin, C. Chakravarty, E. Lascaris, T. Loerting, A. Z. Panagiotopoulos, J. Russo, J. A. Sellberg, H. E. Stanley, H. Tanaka, C. Vega, L. Xu, and L. G. M. Pettersson
    Chem. Rev. 116 7463 (2016)
  9. Seeding approach to crystal nucleation
    J. R. Espinosa, C. Vega, C. Valeriani and E. Sanz
    J. Chem. Phys. 144 034501 (2016)