首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Packing of Russian doll clusters to form a nanometer-scale CsCl-type compound in a Cr-Zn-Sn complex metallic alloy
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Packing of Russian doll clusters to form a nanometer-scale CsCl-type compound in a Cr-Zn-Sn complex metallic alloy

机译:俄罗斯娃娃簇的包装形成Cr-Zn-Sn复合金属合金中的纳米级CSCl型化合物

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The new complex intermetallic alloy, Cr22Zn72Sn24, with a giant cubic unit cell (space group Fm% 3c, Z = 8, Pearson symbol cF944 with a = 25.083(3)angstrom) is reported. The structure can be described as a CsCl-type packing of two "Russian Doll'' type intermetallic clusters: a 99-atom cluster, Cr@(Cr8Zn6)(Sn)(24)(Zn) 60, composed of a central Cr atom encapsulated by three shells: a distorted rhombic dodecahedron, a snubcube, and a rhombi-icosidodecahedron; and a 55-atom cluster, Cr@(Zn)(12)(Zn)(30)(Zn)(12), also composed of a central Cr atom, but now surrounded by three different shells: an icosahedron, an icosidodecahedron, and a larger icosahedron. The two distinct clusters can be considered as "superatoms'' that form the resulting nanometer-scale CsCl-type structure. Evaluating the electronic structure of this complex alloy structure yielded an alternative description, involving a 3-d network of vertex-connected, Cr-centered icosahedra and fragments of bcc metals. This description closely parallels the effective chemical bonding interactions, allowing for an understanding of the stability of this CMA. Magnetic and Seebeck coefficient measurements on self-flux grown crystals of Cr22Zn72Sn24 show it to be paramagnetic and metallic, in agreement with the results of electronic structure calculations.
机译:报道了新的复杂金属间合金CR22ZN72SN24,具有巨型立方体单元(空间组FM%3C,Z = 8,具有A = 25.083(3)埃)的Pearson符号Cf944)。该结构可以描述为两个“俄罗斯娃娃”型金属间簇的CSCL型包装:由中央CR原子组成的99原子簇Cr @(CR8ZN6)(SN)(24)(24)(Zn)60用三个壳体封装:扭曲的菱形十二锭,一个鼻子和菱形 - icosidodechedron;以及55原子簇,Cr @(zn)(12)(zn)(zn)(zn)(12),也由此组成中央CR原子,但现在被三种不同的炮弹包围:ICOSAHEDRON,ICOSIDODECAHEDRON和一个较大的ICOSAHEDRON。两个不同的簇可以被认为是形成所得纳米级CSCL型结构的“超级簇”。评估该复合合金结构的电子结构产生了替代描述,涉及三维顶点连接的CR中心ICOSAHEDRA和BCC金属片段。本说明书与有效的化学键合相互作用紧密相互作用,允许了解该CMA的稳定性。 CR22ZN72SN24的自芯片种植晶体的磁性和塞贝克系数测量显示为顺磁性和金属,同时与电子结构计算结果一致。

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