首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Crystal Structure Chemical Bonding and Magnetism Studies for Three Quinary Polar Intermetallic Compounds in the (Eu1−xCax)9In8(Ge1−ySny)8 (x = 0.66 y = 0.03) and the (Eu1−xCax)3In(Ge3−ySn1+y) (x = 0.66 0.68; y = 0.13 0.27) Phases
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Crystal Structure Chemical Bonding and Magnetism Studies for Three Quinary Polar Intermetallic Compounds in the (Eu1−xCax)9In8(Ge1−ySny)8 (x = 0.66 y = 0.03) and the (Eu1−xCax)3In(Ge3−ySn1+y) (x = 0.66 0.68; y = 0.13 0.27) Phases

机译:(Eu1-xCax)9In8(Ge1-ySny)8(x = 0.66y = 0.03)和(Eu1-xCax)3In(Ge3-ySn1 +)中三种五元极性金属互化物的晶体结构化学键合和磁性研究y)(x = 0.660.68; y = 0.130.27)相

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摘要

Three quinary polar intermetallic compounds in the (Eu1−xCax)9In8(Ge1−ySny)8 (x = 0.66, y = 0.03) and the (Eu1−xCax)3In(Ge3-ySn1+y) (x = 0.66, 0.68; y = 0.13, 0.27) phases have been synthesized using the molten In-metal flux method, and the crystal structures are characterized by powder and single-crystal X-ray diffractions. Two orthorhombic structural types can be viewed as an assembly of polyanionic frameworks consisting of the In(Ge/Sn)4 tetrahedral chains, the bridging Ge2 dimers, either the annulene-like “12-membered rings” for the (Eu1−xCax)9In8(Ge1−ySny)8 series or the cis-trans Ge/Sn-chains for the (Eu1−xCax)3In(Ge3−ySn1+y) series, and several Eu/Ca-mixed cations. The most noticeable difference between two structural types is the amount and the location of the Sn-substitution for Ge: only a partial substitution (11%) occurs at the In(Ge/Sn)4 tetrahedron in the (Eu1−xCax)9In8(Ge1−ySny)8 series, whereas both a complete and a partial substitution (up to 27%) are observed, respectively, at the cis-trans Ge/Sn-chain and at the In(Ge/Sn)4 tetrahedron in the (Eu1−xCax)3In(Ge3−ySn1+y) series. A series of tight-binding linear muffin-tin orbital calculations is conducted to understand overall electronic structures and chemical bonding among components. Magnetic susceptibility measurement indicates a ferromagnetic ordering of Eu atoms below 5 K for Eu1.02(1)Ca1.98InGe2.87(1)Sn1.13.
机译:(Eu1-xCax)9In8(Ge1-ySny)8(x = 0.66,y = 0.03)和(Eu1-xCax)3In(Ge3-ySn1 + y)(x = 0.66,0.68; y = 0.13,0.27)相已经使用熔融的In-metal熔剂方法合成,并且晶体结构通过粉末和单晶X射线衍射表征。两种正交结构类型可以看作是由In(Ge / Sn)4四面体链,桥接Ge2二聚体,或(Eu1-xCax)的像环的“ 12元环”组成的聚阴离子骨架的组装体sub> 9 In 8 (Ge 1-y Sn y 8 系列或< (Eu 1-−em> x Ca x cis-trans Ge / Sn链>) 3 In(Ge 3− y Sn 1+ y )系列,以及几种Eu / Ca混合阳离子。两种结构类型之间最明显的区别是Ge的Sn取代的数量和位置:在In(Ge / Sn) 4 四面体中仅发生部分取代(11%)。 (Eu 1− x Ca x 9 In 8 < / sub>(Ge 1- y Sn y 8 系列,而在顺-反 Ge / Sn-链和In(Ge / Sn) 4 1− x Ca x 3 In中的sub>四面体(Ge 3- y Sn 1+ y )系列。进行了一系列紧密结合的线性松饼-锡轨道计算,以了解整体电子结构和组件之间的化学键合。磁化率测量表明Eu 1.02(1) Ca 1.98 InGe 2.87(1) Sn 5 K以下的Eu原子铁磁有序> 1.13

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