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Quantum chemical analysis about deprotonation reaction of sulfonic group of perfluorosulfonic acid species in the low hydration level

机译:磺化全氟磺酸种类的去质子化反应在低水合水平中的Quantum化学分析

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In this study, we focused on the chemical feature about sulfonic group of perfluorosulfonic acid (PFSA) by first principle calculation in low hydration levels. Our study could elucidate two facts about the chemical property of PFSA, the one is why deprotonation reaction of sulfonic group of PFSA is not occurred in hydration level one and two and the other is notable feature of deprotonation reaction in hydration level three by B3LYP/6- 311+G(d, p) level calculation. In the hydration level three, activation energy of deprotonation reaction of sulfonic group was 0.70 kcal/mol. Although this activation energy includes computational error, it is considered that this deprotonation reaction would proceed in the operation temperature of polymer electrolyte fuel cell smoothly. And total energy of product was lower than the reactant by 3.72 kcal/mol. From these results, deprotonation reaction of sulfonic group in hydration level three would proceed to product efficiently. In addition, reverse reaction is hard to occur by the thermal energy of 350 K which is operation temperature of polymer electrolyte fuel cell.
机译:在这项研究中,我们专注于通过低水合水平的第一个原理计算来专注于全氟磺酸(PFSA)的磺膦酸(PFSA)的化学特征。我们的研究可以阐明关于PFSA的化学性质的两个事实,这是为什么磺酸基团PFSA的去质子化反应在水合等级中不发生,另一个是B3LYP / 6水合水分中的去质子化反应的显着特征 - 311 + g(d,p)水平计算。在水合等级中,磺酸的去质子基反应的激活能量为0.70kcal / mol。虽然这种激活能量包括计算误差,但认为该去质子化反应将平滑地进行聚合物电解质燃料电池的操作温度。和产物的总能量低于反应物3.72千卡/摩尔。从这些结果来看,磺酸基团在水合等级中的去质子反应将有效地进行产品。另外,通过350K的热能难以发生反应,这是聚合物电解质燃料电池的操作温度。

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