Force field of monoethanolamine

被引:81
作者
Alejandre, J
Rivera, JL
Mora, MA
de la Garza, V
机构
[1] Univ Autonoma Metropolitana Iztapalapa, Dept Quim, Mexico City 09340, DF, Mexico
[2] Inst Mexicano Petr, Mexico City 07730, DF, Mexico
关键词
D O I
10.1021/jp993101w
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
We have performed ab initio calculations and canonical molecular dynamics simulations to obtain a force field of monoethanolmine (MEA). The molecule is modeled by seven charged sites; and the force field includes intramolecular degrees of freedom and intermolecular interactions. The charges obtained in the energy minimization procedure reproduce the experimental geometry, dipole moment, and the most stable conformation. Molecular dynamics simulations were carried, out in the liquid phase and in the liquid-vapor equilibrium state. Simulations in the liquid region give us information about hydrogen bond formation, while simulations in the two-phase region allow us to obtain the coexisting densities and surface tension as functions of temperature. The hydrogen bond is favored when the hydrogen of the hydroxyl group is close to a nitrogen or to an oxygen of another molecule, and the strength in both cases is the same. Radial distribution functions involving hydrogens and oxygen in the hydroxyl group of MEA ate compared with those of water at 298 K, and a similar structure is found for die first neighbor of atoms. The proposed force field gives a good description of the liquid-vapor coexistence of MEA. The liquid density obtained in our simulations of the;liquid-vapor equilibrium at 298 K is 1.003 g/cm(3) Versus the experimental value of 1.012 g/cm(3). Our estimated critical point is located at 583.9 K and 0.32 g/cm(3) in comparison with the experimental result of 614 K and 0.3116 g/cm(3), respectively. At 323 K the calculated surface tension is 43.2 +/- 2.5 mN/m while the experimental value is 44.81 mN/m.
引用
收藏
页码:1332 / 1337
页数:6
相关论文
共 31 条
[1]   MOLECULAR-DYNAMICS SIMULATION OF THE ORTHOBARIC DENSITIES AND SURFACE-TENSION OF WATER [J].
ALEJANDRE, J ;
TILDESLEY, DJ ;
CHAPELA, GA .
JOURNAL OF CHEMICAL PHYSICS, 1995, 102 (11) :4574-4583
[2]   FLUID-PHASE EQUILIBRIA USING MOLECULAR-DYNAMICS - THE SURFACE-TENSION OF CHLORINE AND HEXANE [J].
ALEJANDRE, J ;
TILDESLEY, DJ ;
CHAPELA, GA .
MOLECULAR PHYSICS, 1995, 85 (03) :651-663
[3]   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
[4]  
BLAUWHOFF PMM, 1984, CHEM ENG SCI, V39, P207, DOI 10.1016/0009-2509(84)80021-4
[5]   NEW APPROACH TO EMPIRICAL INTERMOLECULAR AND CONFORMATIONAL POTENTIAL-ENERGY FUNCTIONS .3. APPLICATION OF EPEN TO CONFORMATIONAL-ANALYSIS OF 1,2-DISUBSTITUTED ETHANES [J].
BURGESS, AW ;
SHIPMAN, LL ;
NEMENOFF, RA ;
SCHERAGA, HA .
JOURNAL OF THE AMERICAN CHEMICAL SOCIETY, 1976, 98 (01) :23-29
[6]   Molecular dynamics simulation of hydrogen bonding in monoethanolamine [J].
Button, JK ;
Gubbins, KE ;
Tanaka, H ;
Nakanishi, K .
FLUID PHASE EQUILIBRIA, 1996, 116 (1-2) :320-325
[7]   Engineering a simple polarizable model for the molecular simulation of water applicable over wide ranges of state conditions [J].
Chialvo, AA ;
Cummings, PT .
JOURNAL OF CHEMICAL PHYSICS, 1996, 105 (18) :8274-8281
[8]   THERMAL-CONDUCTIVITIES OF THE ETHANOLAMINES [J].
DIGUILIO, RM ;
MCGREGOR, WL ;
TEJA, AS .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 1992, 37 (02) :242-245
[9]   DENSITIES AND VISCOSITIES OF THE ETHANOLAMINES [J].
DIGULLIO, RM ;
LEE, RJ ;
SCHAEFFER, ST ;
BRASHER, LL ;
TEJA, AS .
JOURNAL OF CHEMICAL AND ENGINEERING DATA, 1992, 37 (02) :239-242
[10]   Expanded grand canonical and Gibbs ensemble Monte Carlo simulation of polymers [J].
Escobedo, FA ;
dePablo, JJ .
JOURNAL OF CHEMICAL PHYSICS, 1996, 105 (10) :4391-4394