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铕金三铝二:晶体结构与电子结构以及光谱、磁性和磁热性质

EuAu3Al2: Crystal and Electronic Structures and Spectroscopic, Magnetic, and Magnetocaloric Properties.

作者信息

Schmiegel Jan-Patrick, Block Theresa, Gerke Birgit, Fickenscher Thomas, Touzani Rachid St, Fokwa Boniface P T, Janka Oliver

机构信息

Institut für Anorganische und Analytische Chemie, Westfälische Wilhelms-Universität Münster , Corrensstrasse 28/30, 48149 Münster, Germany.

Institut für Anorganische Chemie, RWTH Aachen , Landoltweg 1, D-52074 Aachen, Germany.

出版信息

Inorg Chem. 2016 Sep 6;55(17):9057-64. doi: 10.1021/acs.inorgchem.6b01530. Epub 2016 Aug 17.

Abstract

The intermetallic compound EuAu3Al2 has been prepared by reaction of the elements in tantalum ampules. The structure was refined from single-crystal data, indicating that the title compound crystallizes in the orthorhombic crystal system (a = 1310.36(4), b = 547.87(1), c = 681.26(2) pm) with space group Pnma (wR2 = 0.0266, 1038 F(2) values, 35 parameters) and is isostructural to SrAu3Al2 (LT-SrZn5 type). Full ordering of the gold and aluminum atoms was observed. Theoretical calculations confirm that the title compound can be described as a polar intermetallic phase containing a polyanionic Au3Al2 network featuring interconnected strands of edge-sharing [AlAu4] tetrahedra. Magnetic measurements and (151)Eu Mössbauer spectroscopic investigations confirmed the divalent character of the europium atoms. Ferromagnetic ordering below TC = 16.5(1) K was observed. Heat capacity measurements showed a λ-type anomaly at T = 15.7(1) K, in line with the ordering temperature from the susceptibility measurements. The magnetocaloric properties of EuAu3Al2 were determined, and a magnetic entropy of ΔSM = -4.8 J kg(-1) K(-1) for a field change of 0 to 50 kOe was determined. Band structure calculations found that the f-bands of Eu present at the Fermi level of non-spin-polarized calculations are responsible for the ferromagnetic ordering in this phase, whereas COHP chemical bonding coupled with Bader charge analysis confirmed the description of the structure as covalently bonded polyanionic Au3Al2 network interacting ionically with Eu(δ+).

摘要

金属间化合物EuAu₃Al₂是通过在钽安瓿中元素反应制备的。其结构由单晶数据精修得到,表明该标题化合物结晶于正交晶系(a = 1310.36(4),b = 547.87(1),c = 681.26(2) pm),空间群为Pnma(wR2 = 0.0266,1038个F(2)值,35个参数),且与SrAu₃Al₂(LT - SrZn₅型)同构。观察到金和铝原子完全有序排列。理论计算证实,该标题化合物可描述为一种极性金属间相,包含一个聚阴离子Au₃Al₂网络,其特征为相互连接的边共享[AlAu₄]四面体链。磁性测量和¹⁵¹Eu穆斯堡尔光谱研究证实了铕原子的二价特性。观察到在TC = 16.5(1) K以下存在铁磁有序。热容测量显示在T = 15.7(1) K处有一个λ型异常,与磁化率测量得到的有序温度一致。测定了EuAu₃Al₂的磁热性质,确定在0至50 kOe的磁场变化下磁熵ΔSM = -4.8 J kg⁻¹ K⁻¹。能带结构计算发现,在非自旋极化计算的费米能级处出现的Eu的f带是该相中铁磁有序的原因,而COHP化学键合结合巴德电荷分析证实了该结构可描述为共价键合的聚阴离子Au₃Al₂网络与Eu(δ+)离子相互作用。

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