Sagarik Kritsana, Phonyiem Mayuree, Lao-ngam Charoensak, Chaiwongwattana Sermsiri
School of Chemistry, Institute of Science, Suranaree University of Technology, Nakhon Ratchasima 30000, Thailand.
Phys Chem Chem Phys. 2008 Apr 21;10(15):2098-112. doi: 10.1039/b718480h. Epub 2008 Feb 21.
Proton transfer reactions at the sulfonic acid groups in Nafion were theoretically studied, using complexes formed from triflic acid (CF3SO3H), H3O+ and H2O, as model systems. The investigations began with searching for potential precursors and transition states at low hydration levels, using the test-particle model (T-model), density functional theory (DFT) and ab initio calculations. They were employed as starting configurations in Born-Oppenheimer molecular dynamics (BOMD) simulations at 298 K, from which elementary reactions were analyzed and categorized. For the H3O+-H2O complexes, BOMD simulations suggested that a quasi-dynamic equilibrium could be established between the Eigen and Zundel complexes, and that was considered to be one of the most important elementary reactions in the proton transfer process. The average lifetime of H3O+ obtained from BOMD simulations is close to the lowest limit, estimated from low-frequency vibrational spectroscopy. It was demonstrated that proton transfer reactions at -SO3H are not concerted, due to the thermal energy fluctuation and the existence of various quasi-dynamic equilibria, and -SO3H could directly and indirectly mediate proton transfer reactions through the formation of proton defects, as well as the -SO3- and -SO3H2+ transition states.
以三氟甲磺酸(CF3SO3H)、H3O+和H2O形成的配合物为模型体系,从理论上研究了Nafion中磺酸基团的质子转移反应。研究首先使用测试粒子模型(T模型)、密度泛函理论(DFT)和从头算计算,在低水合水平下寻找潜在的前驱体和过渡态。它们被用作298K下玻恩-奥本海默分子动力学(BOMD)模拟的初始构型,从中分析和分类基本反应。对于H3O+-H2O配合物,BOMD模拟表明在 Eigen 和 Zundel 配合物之间可以建立准动态平衡,这被认为是质子转移过程中最重要的基本反应之一。从BOMD模拟获得的H3O+的平均寿命接近从低频振动光谱估计的最低极限。结果表明,由于热能波动和各种准动态平衡的存在,-SO3H处的质子转移反应不是协同的,并且-SO3H可以通过形成质子缺陷以及-SO3-和-SO3H2+过渡态直接和间接介导质子转移反应。