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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Proton transport mechanism of imidazole, triazole and phosphoric acid mixtures from ab initio molecular dynamics simulations
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Proton transport mechanism of imidazole, triazole and phosphoric acid mixtures from ab initio molecular dynamics simulations

机译:从头算分子动力学模拟看咪唑,三唑和磷酸混合物的质子传输机理

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摘要

We performed first principles molecular dynamics simulations to elucidate the mechanism and role of 1,2,3-triazole in proton transport while it is mixed with phosphoric acid (PA) and a phosphoric acid imidazole mixture. PA doped imidazole based polymer acts as an efficient polyelectrolyte membrane for fuel cells. The conductivity of this membrane increases when triazole is added to the system. For the first time we performed ab initio molecular dynamics simulations of complex mixtures of PA, imidazole and triazole. We have quantitatively estimated the structural diffusion and vehicular motion of protons. We found that upon the addition of triazole in PA and the PA imidazole mixture, the structural diffusion of protons increases significantly. The mechanism of proton transport is different when triazole is added to the mixture. We have also identified two different paths for structural diffusion (constructive and non-constructive) that contribute to long and short range proton transport.
机译:我们进行了第一原理的分子动力学模拟,以阐明1,2,3-三唑在质子运输中的机理和作用,当它与磷酸(PA)和磷酸咪唑混合物混合时。 PA掺杂的咪唑基聚合物可作为燃料电池的有效聚电解质膜。当将三唑添加到系统中时,该膜的电导率增加。首次,我们从头开始进行了PA,咪唑和三唑的复杂混合物的分子动力学模拟。我们已经定量地估计了质子的结构扩散和车辆运动。我们发现在PA和PA咪唑混合物中添加三唑后,质子的结构扩散显着增加。当将三唑添加到混合物中时,质子传输的机理是不同的。我们还确定了结构扩散的两种不同途径(建设性和非建设性),这有助于长程和短程质子传输。

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