Organic ion association in aqueous phase and ab initio-based force fields: The case of carboxylate/ammonium salts

被引:9
|
作者
Houriez, Celine [1 ]
Vallet, Valerie [2 ]
Real, Florent [2 ]
Meot-Ner , Michael [3 ,4 ]
Masella, Michel [5 ]
机构
[1] PSL Res Univ, MINES ParisTech, CTP, 35 Rue St Honore, F-77300 Fontainebleau, France
[2] Univ Lille, CNRS, UMR 8523, PhLAM Phys Lasers Atomes & Mol, F-59000 Lille, France
[3] Virginia Commonwealth Univ, Dept Chem, Box 2006, Richmond, VA 23284 USA
[4] Univ Canterbury, Dept Chem, Christchurch 8001, New Zealand
[5] CEA Saclay, Lab Biol Struct & Radiobiol, Serv Bioenerget Biol Struct & Mecanismes, Inst Joliot, F-91191 Gif Sur Yvette, France
关键词
MOLECULAR SIMULATIONS; GUANIDINIUM IONS; CARBOXYLIC-ACIDS; HALIDE SOLUTIONS; ALKALI CATIONS; AMMONIUM-IONS; WATER; SOLVATION; POTENTIALS; HYDRATION;
D O I
10.1063/1.4997996
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 performed molecular dynamics simulations of carboxylate/methylated ammonium ion pairs solvated in bulk water and of carboxylate/methylated ammonium salt solutions at ambient conditions using an ab initio-based polarizable force field whose parameters are assigned to reproduce only high end quantum computations, at the Moller-Plesset second-order perturbation theory/complete basis set limit level, regarding single ions and ion pairs as isolated and micro-hydrated in gas phase. Our results agree with the available experimental results regarding carboxylate/ammonium salt solutions. For instance, our force field approach predicts the percentage of acetate associated with ammonium ions in CH3COO- /CH3NH3+ solutions at the 0.2-0.8M concentration scale to range from 14% to 35%, in line with the estimates computed from the experimental ion association constant in liquid water. Moreover our simulations predict the number of water molecules released from the ion first hydration shell to the bulk upon ion association to be about 2.0 +/- 0.6 molecules for acetate/protonated amine ion pairs, 3.1 +/- 1.5 molecules for the HCOO- /NH4+ pair and 3.3 +/- 1.2 molecules for the CH3COO- /(CH3)(4)N+ pair. For protonated amine-based ion pairs, these values are in line with experiment for alkali/halide pairs solvated in bulk water. All these results demonstrate the promising feature of ab initio-based force fields, i.e., their capacity in accurately modeling chemical systems that cannot be readily investigated using available experimental techniques. Published by AIP Publishing.
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页数:14
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