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六水合钒(III)阳离子在钒氧化还原流电池电解液中的结构和稳定性。

Structure and stability of hexa-aqua V(III) cations in vanadium redox flow battery electrolytes.

机构信息

Pacific Northwest National Laboratory, Richland, Washington 99352, USA.

出版信息

Phys Chem Chem Phys. 2012 Aug 7;14(29):10233-42. doi: 10.1039/c2cp40707h. Epub 2012 Jun 26.

Abstract

The vanadium(III) cation structure in mixed acid based electrolyte solution from vanadium redox flow batteries is studied by (17)O and (35/37)Cl nuclear magnetic resonance (NMR) spectroscopy, electronic spectroscopy and density functional theory (DFT) based computational modelling. Both computational and experimental results reveal that the V(III) species can complex with counter anions (sulfate/chlorine) depending on the composition of its solvation sphere. By analyzing the powder precipitate it was found that the formation of sulfate complexed V(III) species is the crucial process in the precipitation reaction. The precipitation occurs through nucleation of neutral species formed through deprotonation and ion-pair formation process. However, the powder precipitate shows a multiphase nature which warrants multiple reaction pathways for precipitation reaction.

摘要

采用(17)O 和(35/37)Cl 核磁共振(NMR)光谱、电子光谱和基于密度泛函理论(DFT)的计算建模研究了钒氧化还原液流电池混合酸电解质溶液中的三价钒阳离子结构。计算和实验结果均表明,V(III)物种可以根据其溶剂化球的组成与抗衡阴离子(硫酸盐/氯)形成配合物。通过分析粉末沉淀物发现,形成硫酸根配合的 V(III)物种是沉淀反应的关键过程。沉淀通过通过去质子化和离子对形成过程形成中性物种的成核来发生。然而,粉末沉淀物呈现多相性质,这需要沉淀反应的多种反应途径。

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