首页> 外文会议>4th International Conference on Fuel Cell Science, Engineering, and Technology 2006 pt.A >MOLECULAR DYNAMICS OF PROTON EXCHANGE INSIDE A NAFION~reg; MEMBRANE
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MOLECULAR DYNAMICS OF PROTON EXCHANGE INSIDE A NAFION~reg; MEMBRANE

机译:NAFION〜®膜内质子交换的分子动力学

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The proton transfer mechanism is the fundamental principle of how the proton exchange membrane fuel cell (PEMFC) works. This paper develops a molecular dynamics technique to simulate the transfer mechanism of the hydrogen protons inside a Nafion 117 membrane. The realistic polymer structure of the Nafion is extremely huge and very complex, it is simplified to be a repeated structure with part of the major carbon-fluoride backbone and a side chain with radicals of SO_3rnin this paper. Water molecules were assigned to distribute between side chains randomly. The simulation package of DLPOLY was employed as the platform. Simulation results show that the water molecules will cluster together due to the polarization characteristics, and the clusters are attracted by the side chain of the membrane electrolyte. Hydrogen protons are then transferred from one side chain to another through the water clusters. The migration process of the hydrogen protons within the membrane is a function of the water uptakes and many other factors. They are investigated to further improve the ionic conduction of the fuel cell membrane.
机译:质子传递机制是质子交换膜燃料电池(PEMFC)工作原理的基本原理。本文开发了一种分子动力学技术来模拟Nafion 117膜内氢质子的转移机理。 Nafion的实际聚合物结构极其庞大且非常复杂,在本文中,它简化为具有部分主要碳氟化物主链和带有SO_3rn自由基的侧链的重复结构。分配水分子以在侧链之间随机分布。以DLPOLY的仿真包为平台。模拟结果表明,由于极化特性,水分子将聚集在一起,并且该聚集被膜电解质的侧链吸引。然后,氢质子通过水簇从一个侧链转移到另一侧链。膜中氢质子的迁移过程是水吸收和许多其他因素的函数。研究它们以进一步改善燃料电池膜的离子传导。

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