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首页> 外文期刊>International Journal of Quantum Chemistry >Synthesis, structure and physical properties of the new Zintl phases Eu11Zn6Sb12 and Eu11Cd6Sb12
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Synthesis, structure and physical properties of the new Zintl phases Eu11Zn6Sb12 and Eu11Cd6Sb12

机译:Zintl新相Eu11Zn6Sb12和Eu11Cd6Sb12的合成,结构和物理性质

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Reported are the syntheses, crystal structure determinations from single-crystal X-ray diffraction, and magnetic properties of two new ternary compounds, Eu11Cd6Sb12 and Eu11Zn6Sb12. Both crystallize with the complex Sr11Cd6Sb12 structure type-monoclinic, space group C2/m (no. 12), Z=2, with unit cell parameters a = 31.979(4)angstrom, b = 4.5981(5)angstrom, c = 12.3499(14)angstrom, beta = 109.675(1) for Eu11Zn6Sb12, and a = 32.507(2)angstrom, b = 4.7294(3)angstrom, c = 12.4158(8)angstrom, beta = 109.972(1)degrees for Eu11Cd6Sb12. Their crystal structures are best described as made up of polyanionic (1)(infinity)[Zn6Sb12](22-) and (1)(infinity)[Cd6Sb12](22) ribbons of corner-shared ZnSb4 and CdSb4 tetrahedra and Eu2+ cations. A notable characteristic of these structures is the presence of Sb-Sb interactions, which exist between two tetrahedra from adjacent layers, givingt rise to unique channels. Detailed structure analyses shows that similar bonding arrangements are seen in much simpler structure types, such as Ca3AlAs3 and Ca5Ga2As6 and the structure can be rationalized as their intergrowth. Temperature-dependent magnetization measurements indicate that Eu11Cd6Sb12 orders anti-ferromagnetically below 7.5 K, while Eu11Zn6Sb12 does not order down to 5K. Resistivity measurements confirm that Eu11Cd6Sb12 is poorly metallic, as expected for a Zintl phase. (c) 2008 Elsevier Inc. All rights reserved.
机译:报告了两种新的三元化合物Eu11Cd6Sb12和Eu11Zn6Sb12的合成,由单晶X射线衍射确定的晶体结构以及磁性。两者均以复杂的Sr11Cd6Sb12结构类型单晶,空间群C2 / m(第12号),Z = 2结晶,单位晶胞参数a = 31.979(4)埃,b = 4.5981(5)埃,c = 12.3499( 14)埃,Eu11Zn6Sb12的beta = 109.675(1),a = 32.507(2)埃,b = 4.7294(3)埃,c = 12.4158(8)埃,β= Eu11Cd6Sb12的109.972(1)度。最好将它们的晶体结构描述为由角共享的ZnSb4和CdSb4四面体和Eu2 +阳离子的聚阴离子(1)(无穷大)[Zn6Sb12](22-)和(1)(无穷大)[Cd6Sb12](22)带组成。这些结构的显着特征是存在Sb-Sb相互作用,该相互作用存在于来自相邻层的两个四面体之间,从而产生了独特的通道。详细的结构分析表明,在更简单的结构类型(例如Ca3AlAs3和Ca5Ga2As6)中也可以看到相似的键排列,并且可以合理地将结构作为它们的共生结构。随温度变化的磁化强度测量结果表明,Eu11Cd6Sb12在7.5 K以下反铁磁有序,而Eu11Zn6Sb12在5K以下无序。电阻率测量结果证实,Eu11Cd6Sb12的金属性较差,这是Zintl相所期望的。 (c)2008 Elsevier Inc.保留所有权利。

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