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七锂氮化钒(V)Li7[VN4]的多晶型性

Polymorphism of heptalithium nitridovanadate(V) Li7[VN4].

作者信息

Niewa R, Zherebtsov D, Hu Z

机构信息

Max-Planck-Institut für Chemische Physik fester Stoffe, Nöthnitzer Str. 40, D-01187 Dresden, Germany.

出版信息

Inorg Chem. 2003 Apr 21;42(8):2538-44. doi: 10.1021/ic020653b.

Abstract

The system Li-V-N was studied by means of X-ray and neutron powder diffraction, thermal and chemical analyses, and XAS spectroscopy at the vanadium K-edge. Three polymorphs of Li(7)[VN(4)] have been established from X-ray and neutron powder diffraction (gamma-Li(7)[VN(4)], space group Pfourmacr;3n, No. 218, a = 960.90(4) pm, V = 887.23(6) x 10(6) pm(3), Z = 8; beta-Li(7)[VN(4)], space group Pathremacr;, No. 205, a = 959.48(3) pm, V = 883.31(5) x 10(6) pm(3), Z = 8; alpha-Li(7)[VN(4)], P4(2)/nmc, No. 137, a = 675.90(2) pm, c = 488.34(2) pm, V = 223.09(1) x 10(6) pm(3), Z = 2). Crystallographic and phase relations are discussed. All three modifications are diamagnetic, indicating vanadium in the oxidation state +5. The V-K XAS spectra support the oxidation state assignment, the non-centrosymmetric coordination (tetrahedral), and the nearly identical second coordination sphere of vanadium, made up from Li in all three phases. The 3d-related features of the spectra display strongly localized properties. The phase transitions appear to be reconstructive; no direct group-subgroup symmetry relations of the crystal structures exist. The formation of solid solutions between Li(2)O and beta-Li(7)[VN(4)] with the general formula Li(1.75)((V(0.25(1)(-)(x))Li(0.25)(x))(N(1)(-)(x)O(x)())) with 0 <or= x <or= 1 leads to increasing substitution of V by Li. At the approximate composition with x = 0.125 the Li-V-disorder seems to be complete: X-ray diffraction lines give rise to only one-half of the original unit cell dimensions, a' = 476.47(3) pm approximately (1/2)a(beta-Li(7)[VN(4)]).

摘要

通过X射线和中子粉末衍射、热分析和化学分析以及钒K边的X射线吸收光谱(XAS)对Li-V-N体系进行了研究。从X射线和中子粉末衍射确定了Li₇[VN₄]的三种多晶型物(γ-Li₇[VN₄],空间群P4̅3n,No.218,a = 960.90(4) pm,V = 887.23(6)×10⁶ pm³,Z = 8;β-Li₇[VN₄],空间群P6̅,No.205,a = 959.48(3) pm,V = 883.31(5)×10⁶ pm³,Z = 8;α-Li₇[VN₄],P4₂/nmc,No.137,a = 675.90(2) pm,c = 488.34(2) pm,V = 223.09(1)×10⁶ pm³,Z = 2)。讨论了晶体学和相关系。所有三种变体都是抗磁性的,表明钒处于+5氧化态。V-K XAS光谱支持氧化态归属、非中心对称配位(四面体)以及钒在所有三个相中由锂组成的几乎相同的第二配位层。光谱的3d相关特征显示出强烈的局域化性质。相变似乎是重构性的;晶体结构不存在直接的群-子群对称关系。Li₂O与β-Li₇[VN₄]之间形成通式为Li₁.₇₅((V₀.₂₅(¹⁻ˣ)Li₀.₂₅ˣ)(N₁⁻ˣOₓ))且0≤x≤1的固溶体导致Li对V的取代增加。在x = 0.125的近似组成下,Li-V无序似乎是完全的:X射线衍射线仅产生原始晶胞尺寸的一半,a' = 476.47(3) pm≈(1/2)a(β-Li₇[VN₄])。

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