化学
费米接触相互作用
电子结构
密度泛函理论
固态核磁共振
原子轨道
离子
钒
结晶学
费米能级
未成对电子
八面体
计算化学
超精细结构
原子物理学
电子
核磁共振
晶体结构
分子
无机化学
物理
有机化学
量子力学
作者
Tahya Bamine,Édouard Boivin,Christian Masquelier,Laurence Croguennec,Elodie Salager,Dany Carlier
摘要
Abstract 7 Li, 31 P, and 19 F solid‐state nuclear magnetic resonance (NMR) spectroscopy was used to investigate the local arrangement of oxygen and fluorine in LiVPO 4 F 1‐y O y materials, interesting as positive electrode materials for Li‐ion batteries. From the evolution of the 1D spectra versus y, 2D 7 Li radiofrequency‐driven recoupling (RFDR) experiments combined, and a tentative signal assignment based on density functional theory (DFT) calculations, it appears that F and O are not randomly dispersed on the bridging X position between two X–VO 4 –X octahedra (X = O or F) but tend to segregate at a local scale. Using DFT calculations, we analyzed the impact of the different local environments on the local electronic structure. Depending on the nature of the VO 4 X 2 environments, vanadium ions are either in the +III or in the +IV oxidation state and can exhibit different distributions of their unpaired electron(s) on the d orbitals. Based on those different local electronic structures and on the computed Fermi contact shifts, we discuss the impact on the spin transfer mechanism on adjacent nuclei and propose tentative signal assignments. The O/F clustering tendency is discussed in relation with the formation of short V IV O vanadyl bonds with a very specific electronic structure and possible cooperative effect along the chain.
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