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结合锂核磁共振、密度泛函理论和同步加速器X射线粉末衍射来研究正极材料LiFeVO的结构演变。

Combined Li NMR, density functional theory and synchrotron X-ray powder diffraction to investigate a structural evolution of cathode material LiFeVO.

作者信息

Pereira Taiana L E, Serrano Sevillano Jon, Moreno Beatriz D, Reid Joel W, Carlier Dany, Goward Gillian R

机构信息

Department of Chemistry & Chemical Biology, McMaster University, 1280 Main St. West, Hamilton, Ontario L8S 4M1, Canada.

Centro de Investigación Cooperativa de Energías Alternativas (CIC energiGUNE), Basque Research and Technology Alliance (BRTA), 01510 Vitoria-Gasteiz, Spain.

出版信息

Faraday Discuss. 2025 Jan 8;255(0):244-265. doi: 10.1039/d4fd00077c.

Abstract

In our recent study, we demonstrated using Li solid-state Nuclear Magnetic Resonance (ssNMR) and single-crystal X-ray diffraction that the cathode LiFeVO possesses a defect associated with the positioning of vanadium atoms. We proposed that this defect could be the source of extra signals detected in the Li spectra. In this context, we now apply density functional theory (DFT) calculations to assign the experimental signals observed in Li NMR spectra of the pristine sample. The calculation results are in strong agreement with the experimental observations. DFT calculations are a useful tool to interpret the observed paramagnetic shifts and understand how the presence of disorder affects the spectra behavior through the spin-density transfer processes. Furthermore, we conducted a detailed study of the lithiated phase combining synchrotron powder X-ray diffraction (SPXRD) and DFT calculations. A noticeable volume expansion is observed through the first discharge cycle which likely contributes to the enhanced lithium dynamics in the bulk material, as supported by previously published ssNMR data. DFT calculations are used to model the lithiated phase and demonstrate that both iron and vanadium participate in the redox process. The unusual electronic structure of the V exhibits a single electron on the 3d orbital perpendicular to the V-O-Li bond being a source of a negative Fermi contact shift observed in the Li NMR of the lithiated phase.

摘要

在我们最近的研究中,我们使用锂固态核磁共振(ssNMR)和单晶X射线衍射证明,阴极LiFeVO存在与钒原子定位相关的缺陷。我们提出,这种缺陷可能是在锂谱中检测到的额外信号的来源。在此背景下,我们现在应用密度泛函理论(DFT)计算来确定在原始样品的锂核磁共振谱中观察到的实验信号。计算结果与实验观察结果高度一致。DFT计算是解释观察到的顺磁位移以及理解无序的存在如何通过自旋密度转移过程影响光谱行为的有用工具。此外,我们结合同步辐射粉末X射线衍射(SPXRD)和DFT计算对锂化相进行了详细研究。通过首次放电循环观察到明显的体积膨胀,这可能有助于提高块状材料中的锂动力学,正如先前发表的ssNMR数据所支持的那样。DFT计算用于模拟锂化相,并证明铁和钒都参与了氧化还原过程。V的异常电子结构表现为在垂直于V-O-Li键的3d轨道上有一个单电子,这是在锂化相的锂核磁共振中观察到的负费米接触位移的来源。

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