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首页> 外文期刊>International Journal of Quantum Chemistry >Dynamics of proton exchange in a model phosphonic acid-functionalized polymer
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Dynamics of proton exchange in a model phosphonic acid-functionalized polymer

机译:模型膦酸官能化聚合物中质子交换的动力学

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The dynamics and mechanism of proton exchange in phosphonic acid-functionalized polymers were studied using poly(vinyl-phosphonic acid) (PVPA) as a model system along with quantum chemical calculations and Born-Oppenheimer molecular dynamics (BOMD) simulations at the B3LYP/TZVP level as model calculations. This theoretical study began with searching for the smallest, most active polymer segments and their intermediate conformations which could be involved in the local proton-exchange process. The B3LYP/TZVP results confirmed that a low local dielectric environment and excess proton conditions are required to generate the intermediate conformations, and the shapes of the potential energy curves of the proton exchange between the two phosphonic acid functional groups are sensitive to the local conformational changes. In contrast, a high local dielectric environment increases the energy barriers, thereby preventing the proton from returning to the original functional group. Based on the static results, a mechanism for the proton exchange between the two functional groups involving fluctuations in the local dielectric environment and a local conformational change was proposed. The BOMD results confirmed the proposed mechanism by showing that the activation energies for the proton exchange in the hydrogen bond between two immobilized phosphonic acid moieties, obtained from the exponential relaxation behaviors of the envelopes of the velocity autocorrelation functions and the H-1 Nuclear Magnetic Resonance (NMR) line-shape analyses, are too low to be the rate-determining process. Instead, coupled librational motion in the backbone which leads to the interconversion between the two intermediate conformations possesses higher activation energy, and therefore represents one of the most important rate-determining processes. These findings suggested that the rate of the proton exchange in the model phosphonic acid-functionalized polymer is determined by the polymer mobility which, in this case, is the large-amplitude librational motion of the vinyl backbone. (c) 2015 Wiley Periodicals, Inc.
机译:使用聚(乙烯基膦酸)(PVPA)作为模型系统,研究了膦酸官能化聚合物中质子交换的动力学和机理,并在B3LYP / TZVP上进行了量子化学计算和Born-Oppenheimer分子动力学(BOMD)模拟水平作为模型计算。这项理论研究始于寻找可能参与局部质子交换过程的最小,活性最高的聚合物链段及其中间构象。 B3LYP / TZVP结果证实,生成中间构象需要较低的局部介电环境和过量的质子条件,并且两个膦酸官能团之间的质子交换的势能曲线的形状对局部构象变化敏感。相反,较高的局部介电环境会增加能垒,从而防止质子返回到原始官能团。基于静态结果,提出了两个官能团之间质子交换的机制,涉及局部介电环境的波动和局部构象变化。 BOMD结果通过显示两个固定的膦酸部分之间氢键中质子交换的活化能从速度自相关函数和H-1核磁共振的包络线的指数弛豫行为中得到了证实(NMR)线形分析太低,无法确定速率。取而代之的是,导致两个中间构象相互转化的主链中的耦合自由运动具有更高的活化能,因此代表了最重要的速率决定过程之一。这些发现表明,在模型膦酸官能化的聚合物中质子交换的速率取决于聚合物的迁移率,在这种情况下,该迁移率是乙烯基主链的大振幅自由运动。 (c)2015年威利期刊有限公司

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