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Effects of a Mixed O/F Ligand in the Tavorite-Type LiVPO4O Structure

机译:混合O / F配体在茶酒型LIVPO4O结构中的影响

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We report the synthesis and detailed structural and chemical characterization including electrochemical properties of a lithium vanadium oxy/fluoro-phosphate material. To the best of our knowledge, we have for the first time synthesized a LiVPO4O-type phase with a mixed O/F ligand. In the synthesis procedure, the LiVPO4O precursor compound was fluorinated via LiF incorporation, with preservation of the LiVPO4O framework structure. The operating potential of the synthesized material is increased compared to that of the LiVPO4O precursor (4.12 V vs 3.95 V versus metallic lithium, respectively). The related increase in operating potential was assigned to the effect of the intermixing O/F ligand, which is attained via the successful fluorine incorporation into the LiVPO4O structure. A characterization of the investigated materials was performed using microscale-covering XRD, XANES, and NMR techniques as well as nanoscale spatially resolved imaging and analytical STEM techniques. The obtained oxy/fluoro-phosphate phase is isostructural to LiVPO4O; however, the presence of the mixed O/F ligand promoted a higher symmetry of vanadium octahedra. These variations of the vanadium local environment along with the observed inhomogeneous distribution of the incorporated fluorine gave rise to the minor local deviations in vanadium valence. Our results clearly emphasize the connection among the fluorine ligand incorporation, its local distribution, and the electrochemical properties of the material.
机译:我们报道了合成和详细的结构和化学表征,包括锂钒氧化物/氟磷酸锂材料的电化学性质。据我们所知,我们首次使用混合的O / F配体合成LIVPO4O型相位。在合成程序中,通过LIVPO 4O前体化合物通过LIV掺入氟化,具有LIVPO4O框架结构的保存。与LiVPO 4O前体的相比,合成材料的运行电位增加(4.12V与3.95V与金属锂)。经运行电位的相关增加被分配到混合O / F配体的效果,其通过成功的氟掺入到LiVPO 4O结构中。使用微观覆盖XRD,XANE和NMR技术以及纳米级空间分辨的成像和分析干技术进行研究的表征。获得的氧/氟 - 磷酸相对于LIVPO4O是一种;然而,混合O / F配体的存在促进了钒八面黄氢钒的更高对称性。钒局部环境的这些变化以及所掺入的氟的观察到的不均匀分布产生了钒效价的较小局部偏差。我们的结果清楚地强调了氟配体掺入,其局部分布和材料的电化学性质之间的连接。

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