作者:Rainer Pöttgen、Rolf-Dieter Hoffmann、Manfred H. Möller、Gunter Kotzyba、Bernd Künnen、Carsten Rosenhahn、Bernd D. Mosel
DOI:10.1006/jssc.1999.8236
日期:1999.6
high-frequency furnace. Their structures were refined from single crystal X-ray diffractometer data: Pnma, a=744.4(1) pm, b=434.15(9) pm, c=845.5(1) pm, wR2=0.0433, 658 F2 values, 20 variables for EuRhIn, Fd3m, a=756.5(1) pm, wR2=0.0349, 94 F2 values, 5 variables for EuIr2, and Cmcm, a=434.78(3) pm, b=1124.0(1) pm, c=751.20(5) pm, wR2=0.0561, 565 F2 values, 16 variables for EuIrSn2. EuRhIn crystallizes with a
通过在高频炉中的密封钽管中反应,由元素制备标题化合物。从单晶X射线衍射仪数据中完善了它们的结构:Pnma,a = 744.4(1)pm,b = 434.15(9)pm,c = 845.5(1)pm,wR 2 = 0.0433,658 F 2值,20 EuRhIn的变量,Fd 3 m,a = 756.5(1)pm,wR 2 = 0.0349,94 F 2值,EuRr 2和Cmcm的5个变量,a = 434.78(3)pm,b = 1124.0(1)pm ,c = 751.20(5)pm,wR 2 = 0.0561,565 F 2值,EuIsSn 2的16个变量。EuRhIn结晶为TiNiSi型结构,该结构由强烈起皱的Rh 3 In 3六边形组成。atoms原子填充三维[RhIn]聚阴离子中的通道。在22.0(5)K 6.7(1)的饱和磁矩铁磁EuRhIn订单μ乙/铕在4 K和5.5 T.在E