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A combined theoretical-experimental study of interactions between vanadium ions and Nafion membrane in all-vanadium redox flow batteries

机译:全钒氧化还原液流电池中钒离子与Nafion膜之间相互作用的理论和实验组合研究

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摘要

Vanadium redox flow batteries (VRFBs) are a promising solution for large-scale energy storage, but a number of problems still impede the deployment of long-lifetime VRFBs. One important aspect of efficient operation of VRFBs is understanding interactions between vanadium species and the membrane. Herein, we investigate the interactions between all four vanadium cations and Nafion membrane by a combination of infrared (IR) spectroscopy and density-functional-theory (DFT)-based static and molecular dynamics simulations. It is observed that vanadium species primarily lead to changes in the IR spectrum of Nafion in the SOT spectral region which is attributed to the interaction between vanadium species and the SOT exchange sites. DFT calculations of vanadium Nafion complexes in the gas phase show that it is thermodynamically favorable for all vanadium cations to bind to SOT via a contact pair mechanism. Car-Parrinello molecular dynamics -based metadynamics simulations of cation-Nafion systems in aqueous solution suggest that V2+ and V3+ species coordinate spontaneously to SOT, which is not the case for VO2+ and VOI. The interaction behavior of the uncycled membrane determined in this study is used to explain the experimentally observed changes in the vibrational spectra, and is discussed in light of previous results on device-cycled membranes.
机译:钒氧化还原液流电池(VRFB)是用于大规模储能的有前途的解决方案,但是许多问题仍然阻碍了长寿命VRFB的部署。 VRFBs有效运行的一个重要方面是了解钒物质与膜之间的相互作用。在这里,我们通过结合红外(IR)光谱和基于密度泛函理论(DFT)的静态和分子动力学模拟研究了所有四种钒阳离子与Nafion膜之间的相互作用。观察到钒物种主要导致Nafion在SOT光谱区域的红外光谱变化,这归因于钒物种与SOT交换位点之间的相互作用。气相中Nafion钒配合物的DFT计算表明,所有钒阳离子通过接触对机理与SOT结合在热力学上都是有利的。基于Car-Parrinello分子动力学的水溶液中阳离子Nafion系统的元动力学模拟表明,V2 +和V3 +物种自发地与SOT协调,而VO2 +和VOI并非如此。在这项研究中确定的未循环膜的相互作用行为被用来解释实验观察到的振动光谱的变化,并根据设备循环膜的先前结果进行了讨论。

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