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首页> 外文期刊>Russian Journal of Coordination Chemistry >Electronic Structures, Chemical Bonding, and Defect Formation in Mixed Cyanoferrates M2Cu[Fe(CN)6] (M = Na, K, Rb, and Cs)
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Electronic Structures, Chemical Bonding, and Defect Formation in Mixed Cyanoferrates M2Cu[Fe(CN)6] (M = Na, K, Rb, and Cs)

机译:混合氰铁酸盐M2Cu [Fe(CN)6]中的电子结构,化学键和缺陷形成(M = Na,K,Rb和Cs)

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摘要

The effect of the alkali metal nature on the electronic structures and chemical bonding in mixed cyanoferrates M2Cu[Fe(CN)6] (M = Na, K, Rb, and Cs) was studied by ab initio tight-binding linear muffin-tin orbital (TB-LMTO) method (in the spin-polarized implementation) and the extended Huckel molecular orbital (EHMO) method. It was found that the X-ray photoelectron spectra of the ferrimagnetic compounds Na2Cu[Fe(CN)6] (I), K2Cu[Fe(CN)6] (II), Rb2Cu[Fe(CN)6 (III), and Cs2Cu[Fe(CN)6] (IV) are similar. The magnetic moments on Cu~(2+) and iron ions remain virtually constant in compounds I-IV (μ(Cu) ≈ 0.9μ_B, μ(Fe) < -0.06 μ_B). Analyses of the electron density maps and the bond overlap populations showed that the cubic frameworks of cyanoferrates are built from stable fragments ...-Fe-C≡N-Cu-.... The bond strength in these fragments decreases substantially in the order C-N → Fe-C → Cu-N and only slightly in the order IV → III → II → I. The calculated total energies of the cyanoferrates Cs_(2-x)Cu[Fe(CN)6], CsHCu[Fe(CN)6], and NaHCu[Fe(CN)6] for different concentrations and configurations of defects (cesium vacancies and hydrogen substitution defects) suggest mutual repulsion of defects. This repulsion is responsible for the experimentally observed lowering of the ionic conductivity with an increase in the defect concentration in the mixed cyanoferrates.
机译:从头开始紧密结合的线性松饼-锡轨道研究了碱金属性质对混合氰铁酸盐M2Cu [Fe(CN)6](M = Na,K,Rb和Cs)的电子结构和化学键的影响(TB-LMTO)方法(在自旋极化实现中)和扩展的Huckel分子轨道(EHMO)方法。已发现亚铁磁性化合物Na2Cu [Fe(CN)6](I),K2Cu [Fe(CN)6](II),Rb2Cu [Fe(CN)6(III)和Cs2Cu [Fe(CN)6](IV)相似。在化合物I-IV中,Cu〜(2+)和铁离子上的磁矩几乎保持不变(μ(Cu)≈0.9μ_B,μ(Fe)<-0.06μ_B)。对电子密度图和键重叠种群的分析表明,氰基铁酸盐的立方构架是由稳定的片段...-Fe-C≡N-Cu-...建立的。这些片段中的键强度依次降低CN→Fe-C→Cu-N,且仅按IV→III→II→I的顺序排列。氰铁酸盐Cs_(2-x)Cu [Fe(CN)6],CsHCu [Fe(CN )6]和NaHCu [Fe(CN)6]用于不同浓度和构造的缺陷(铯空位和氢取代缺陷)表明相互排斥。这种排斥作用是实验观察到的离子电导率降低,同时混合氰铁酸盐中的缺陷浓度增加。

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