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APd2Zn3 (A=Ca, Sr, Eu) with a CaCu5 superstructure

机译:APd2Zn3 (A=Ca, Sr, Eu) 具有 CaCu5 上部结构

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Abstract The intermetallic phases APd2Zn3 (A=Ca, Sr, Eu) were synthesized from the elements in sealed niobium ampules in an induction furnace. The phase purity of the samples was checked by powder X‐ray diffraction (Guinier technique). The structures were refined from single crystal X‐ray diffractometer data: YNi2Al3 type (CaCu5 superstructure), P6/mmm, a=936.97(4), c=420.75(2) pm, wR2=0.0206, 259 F2 values, 17 variables for CaPd2Zn3, a=953.63(6), c=425.38(3) pm, wR2=0.0185, 230 F2 values, 17 variables for SrPd2Zn3 and a=948.20(7), c=423.20(3) pm, wR2=0.0209, 228 F2 values, 18 variables for EuPd2.12(1)Zn2.88(1). The europium‐based crystal showed a small homogeneity range through Pd/Zn mixing. The striking structural motifs of the APd2Zn3 phases are Kagome networks formed by the palladium and zinc atoms. The superstructure formation (discussed on the basis of a Bärnighausen tree) results from a different Pd/Zn coloring and a shift of one A position by c/2. The divalent character of europium in EuPd2Zn3 was substantiated by magnetic susceptibility and 151Eu Mössbauer spectroscopic measurements. EuPd2Zn3 orders ferrimagnetically at TC=17.5(5) K. The magnetization behavior at 3 K (two‐step magnetization) confirms the existence of two crystallographically independent europium sites. The 151Eu Mössbauer spectrum at 5 K shows full magnetic hyperfine field splitting (δ=−8.99(4) mm s−1 and BHf=27.7(1) T).
机译:摘要 在感应炉中,由密封的铌安瓿中的元素合成了金属间相APd2Zn3 (A=Ca, Sr, Eu)。通过粉末X射线衍射(Guinier技术)检查样品的相纯度。根据单晶X射线衍射仪数据对结构进行细化:YNi2Al3型(CaCu5超结构),P6/mmm,a=936.97(4),c=420.75(2)pm,wR2=0.0206,259个F2值,CaPd2Zn3为17个变量,a=953.63(6),c=425.38(3)pm,wR2=0.0185,230个F2值,SrPd2Zn3为17个变量,a=948.20(7),c=423.20(3)pm, wR2=0.0209,228 个 F2 值,EuPd2.12(1)Zn2.88(1) 的 18 个变量。铕基晶体通过Pd/Zn混合表现出较小的均匀性范围。APd2Zn3 相的醒目结构基序是由钯和锌原子形成的戈薇网络。上部结构的形成(在Bärnighausen树的基础上讨论)是由不同的Pd/Zn着色和c/2的一个A位置移动的结果。EuPd2Zn3中铕的二价特性通过磁化率和151Eu Mössbauer光谱测量得到证实。EuPd2Zn3 在 TC=17.5(5) K 时以铁磁方式排序。3 K(两步磁化)下的磁化行为证实了两个晶体学上独立的铕位点的存在。5 K 处的 151Eu Mössbauer 光谱显示全磁超精细场分裂 (δ=−8.99(4) mm s−1 和 BHf=27.7(1) T)。

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