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三氟乙酸和三氟甲磺酸离子/水混合物的分子动力学模拟:燃料电池中的质子传导电解质组分。

Molecular dynamics simulations of triflic acid and triflate ion/water mixtures: a proton conducting electrolytic component in fuel cells.

机构信息

Department of Chemistry, Indian Institute of Science Education and Research, Pune, Maharashtra, India.

出版信息

J Comput Chem. 2011 Nov 30;32(15):3319-28. doi: 10.1002/jcc.21929. Epub 2011 Aug 31.

Abstract

Triflic acid is a functional group of perflourosulfonated polymer electrolyte membranes where the sulfonate group is responsible for proton conduction. However, even at extremely low hydration, triflic acid exists as a triflate ion. In this work, we have developed a force-field for triflic acid and triflate ion by deriving force-field parameters using ab initio calculations and incorporated these parameters with the Optimized Potentials for Liquid Simulations - All Atom (OPLS-AA) force-field. We have employed classical molecular dynamics (MD) simulations with the developed force field to characterize structural and dynamical properties of triflic acid (270-450 K) and triflate ion/water mixtures (300 K). The radial distribution functions (RDFs) show the hydrophobic nature of CF(3) group and presence of strong hydrogen bonding in triflic acid and temperature has an insignificant effect. Results from our MD simulations show that the diffusion of triflic acid increases with temperature. The RDFs from triflate ion/water mixtures shows that increasing hydration causes water molecules to orient around the SO(3)(-) group of triflate ions, solvate the hydronium ions, and other water molecules. The diffusion of triflate ions, hydronium ion, and water molecules shows an increase with hydration. At λ = 1, the diffusion of triflate ion is 30 times lower than the diffusion of triflic acid due to the formation of stable triflate ion-hydronium ion complex. With increasing hydration, water molecules break the stability of triflate ion-hydronium ion complex leading to enhanced diffusion. The RDFs and diffusion coefficients of triflate ions, hydronium ions and water molecules resemble qualitatively the previous findings using per-fluorosulfonated membranes.

摘要

三氟甲磺酸是全氟磺酸聚合物电解质膜的官能团,其中磺酸盐基团负责质子传导。然而,即使在极低的水合度下,三氟甲磺酸也以三氟甲磺酸根离子的形式存在。在这项工作中,我们通过从头算计算推导出三氟甲磺酸和三氟甲磺酸根离子的力场参数,并将这些参数与优化的液体模拟势能-全原子(OPLS-AA)力场结合。我们使用开发的力场进行经典分子动力学(MD)模拟,以表征三氟甲磺酸(270-450 K)和三氟甲磺酸根离子/水混合物(300 K)的结构和动力学性质。径向分布函数(RDF)显示 CF3 基团的疏水性和三氟甲磺酸中强氢键的存在,温度的影响可以忽略不计。我们的 MD 模拟结果表明,三氟甲磺酸的扩散随温度升高而增加。三氟甲磺酸根离子/水混合物的 RDF 表明,随着水合作用的增加,水分子围绕三氟甲磺酸根离子的 SO3(-)基团取向,溶剂化水合氢离子和其他水分子。三氟甲磺酸根离子、水合氢离子和水分子的扩散随水合作用的增加而增加。在 λ = 1 时,由于稳定的三氟甲磺酸根离子-水合氢离子配合物的形成,三氟甲磺酸根离子的扩散速度比三氟甲磺酸低 30 倍。随着水合作用的增加,水分子破坏了三氟甲磺酸根离子-水合氢离子配合物的稳定性,导致扩散增强。三氟甲磺酸根离子、水合氢离子和水分子的 RDF 和扩散系数与使用全氟磺酸膜的先前发现定性相似。

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