Refinement of the OPLSAA Force-Field for Liquid Alcohols

被引:41
作者
Zangi, Ronen [1 ,2 ,3 ]
机构
[1] Univ Basque Country UPV EHU, POLYMAT, Ave Tolosa 72, San Sebastian 20018, Spain
[2] Univ Basque Country UPV EHU, Dept Organ Chem 1, Ave Tolosa 72, San Sebastian 20018, Spain
[3] Ikerbasque, Basque Fdn Sci, Maria Diaz de Haro 3, Bilbao 48013, Spain
关键词
INTERMOLECULAR POTENTIAL FUNCTIONS; SELF-DIFFUSION; MOLECULAR-DYNAMICS; HEAT-CAPACITY; GAS-PHASE; WATER; COEFFICIENT; VAPORIZATION; SIMULATIONS; DIFFRACTION;
D O I
10.1021/acsomega.8b03132
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
We employ the popular all-atom optimized potential for liquid simulations, OPLSAA, force-field to model 17 different alcohols in the liquid state. Using the standard simulation protocol for few hundred nanosecond time periods, we find that 1-octanol, 1-nonanol, and 1-decanol undergo spontaneous transition to a crystalline state at temperatures which are 35-55 K higher than the experimental melting temperatures. Nevertheless, the crystal structures obtained from the simulations are very similar to those determined by X-ray powder diffraction data for several n-alcohols. Although some degree of deviations from the experimental freezing points are to be expected, for 1-nonanol and 1-decanol, the elevation of the freezing temperature warrants special attention because at room temperature, these alcohols are liquids; however, if simulated by the OPLSAA force-field, they will crystallize. This behavior is likely a consequence of exaggerated attractive interactions between the alkane chains of the alcohols. To circumvent this problem, we combined the OPLSAA model with the L-OPLS force-field. We adopted the L-OPLS parameters to model the hydrocarbon tail of the alcohols, whereas the hydroxyl head group remained as in the original OPLSAA force-field. The resulting alcohols stayed in the liquid state at temperatures above their experimental melting points, thus, resolving the enhanced freezing observed with the OPLSAA force-field. In fact, the mixed-model alcohols did not exhibit any spontaneous freezing even at temperatures much lower than the experimental values. However, a series of simulations in which these mixed-OPLSAA alcohols started from a coexistence configuration of the liquid and solid phases resulted in freezing transitions at temperatures 14-25 K lower than the experimental values, confirming the validity of the proposed model. For all of the other alcohols, the mixed model yields results very similar to the OPLSAA force-field and is in good agreement with the experimental data. Thus, for simulating alcohols in the liquid phase, the mixed-OPLSAA model is necessary for large (7 carbons and above) hydrocarbon chains.
引用
收藏
页码:18089 / 18099
页数:11
相关论文
共 51 条
[1]   Phase Transition Enthalpy Measurements of Organic and Organometallic Compounds. Sublimation, Vaporization and Fusion Enthalpies From 1880 to 2010 [J].
Acree, William, Jr. ;
Chickos, James S. .
JOURNAL OF PHYSICAL AND CHEMICAL REFERENCE DATA, 2010, 39 (04)
[2]   THERMODYNAMIC PROPERTIES OF GLYCEROL ENTHALPIES OF COMBUSTION AND VAPORIZATION AND THE HEAT-CAPACITY AT 298.15-K - ENTHALPIES OF SOLUTION IN WATER AT 288.15, 298.15, AND 308.15-K [J].
BASTOS, M ;
NILSSON, SO ;
DASILVA, MDMCR ;
DASILVA, MAVR ;
WADSO, I .
JOURNAL OF CHEMICAL THERMODYNAMICS, 1988, 20 (11) :1353-1359
[3]   A WELL-BEHAVED ELECTROSTATIC POTENTIAL BASED METHOD USING CHARGE RESTRAINTS FOR DERIVING ATOMIC CHARGES - THE RESP MODEL [J].
BAYLY, CI ;
CIEPLAK, P ;
CORNELL, WD ;
KOLLMAN, PA .
JOURNAL OF PHYSICAL CHEMISTRY, 1993, 97 (40) :10269-10280
[4]   MOLECULAR-DYNAMICS WITH COUPLING TO AN EXTERNAL BATH [J].
BERENDSEN, HJC ;
POSTMA, JPM ;
VANGUNSTEREN, WF ;
DINOLA, A ;
HAAK, JR .
JOURNAL OF CHEMICAL PHYSICS, 1984, 81 (08) :3684-3690
[5]   Canonical sampling through velocity rescaling [J].
Bussi, Giovanni ;
Donadio, Davide ;
Parrinello, Michele .
JOURNAL OF CHEMICAL PHYSICS, 2007, 126 (01)
[6]   STRUCTURE AND PROPERTIES OF NEAT LIQUIDS USING NONADDITIVE MOLECULAR-DYNAMICS - WATER, METHANOL, AND N-METHYLACETAMIDE [J].
CALDWELL, JW ;
KOLLMAN, PA .
JOURNAL OF PHYSICAL CHEMISTRY, 1995, 99 (16) :6208-6219
[7]   Force Field Benchmark of Organic Liquids: Density, Enthalpy of Vaporization, Heat Capacities, Surface Tension, Isothermal Compressibility, Volumetric Expansion Coefficient, and Dielectric Constant [J].
Caleman, Carl ;
van Maaren, Paul J. ;
Hong, Minyan ;
Hub, Jochen S. ;
Costa, Luciano T. ;
van der Spoel, David .
JOURNAL OF CHEMICAL THEORY AND COMPUTATION, 2012, 8 (01) :61-74
[8]   Systematic Refinement of Canongia Lopes-Padua Force Field for Pyrrolidinium-Based Ionic Liquids [J].
Chaban, Vitaly V. ;
Voroshylova, Iuliia V. .
JOURNAL OF PHYSICAL CHEMISTRY B, 2015, 119 (20) :6242-6249
[9]   Interatomic Lennard-Jones potentials of linear and branched alkanes calibrated by Gibbs ensemble simulations for vapor-liquid equilibria [J].
Chang, J ;
Sandler, SI .
JOURNAL OF CHEMICAL PHYSICS, 2004, 121 (15) :7474-7483
[10]   Diffusion coefficients for the binary system glycerol plus water at 25 °C.: A velocity correlation study [J].
D'Errico, G ;
Ortona, O ;
Capuano, F ;
Vitagliano, V .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 2004, 49 (06) :1665-1670