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首页> 外文期刊>International Journal of Quantum Chemistry >PREPARATION, PROPERTIES, AND CRYSTAL STRUCTURES OF TI3ZN22 AND TIZN16
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PREPARATION, PROPERTIES, AND CRYSTAL STRUCTURES OF TI3ZN22 AND TIZN16

机译:TI3ZN22和TIZN16的制备,性能和晶体结构

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Single crystals of Ti3Zn22 and TiZn16 were isolated from slowly cooled zinc-rich samples by dissolving their matrices in hydrochloric acid, which attacks the titanium-containing crystals at a lower rate. Both compounds are Pauli paramagnetic and show metallic conductivity. Their crystal structures were determined from single-crystal X-ray data. Ti3Zn22 is of a new structure type with tetragonal symmetry: P4(2)/mbc, a = 1152.3(1), c = 1145.6(2) pm, Z = 4, R = 0.020 for 920 structure factors and 64 variable parameters. The titanium atoms occupy two different sites with the coordination numbers 15 and 16, respectively, and one titanium position shows mixed occupancy, which results in the exact composition Ti-2.841(8)Zn-22.159(8). The seven different zinc atoms have between 11 and 14 near neighbors. The previously reported structure of TiZn16 is confirmed: Cmcm, a = 769.9(3), b = 1141.4(4), c = 1180.0(3) pm, Z 4, R = 0.022 for 787 structure factors and 50 variables. Both structures can be described as packings of different atomic layers. These layers are densely populated by zinc atoms or less densely populated by both titanium and zinc atoms. Both structures contain relatively large voids and it is suggested that these voids are filled with nonbonding electrons of the zinc atoms. (C) 1995 Academic Press, Inc. [References: 17]
机译:将Ti3Zn22和TiZn16单晶通过将它们的基质溶解在盐酸中而从缓慢冷却的富锌样品中分离出来,这会以较低的速率腐蚀含钛晶体。两种化合物都是保利顺磁性的,并显示出金属导电性。由单晶X射线数据确定它们的晶体结构。 Ti3Zn22是具有四角对称性的新型结构类型:P4(2)/ mbc,a = 1152.3(1),c = 1145.6(2)pm,Z = 4,对于920个结构因子和64个可变参数而言,R = 0.020。钛原子分别占据两个不同的位置,其配位数为15和16,并且一个钛位置显示出混合的占有率,这导致了精确的组成Ti-2.841(8)Zn-22.159(8)。七个不同的锌原子之间的相邻原子数为11至14。确认了先前报告的TiZn16的结构:Cmcm,a = 769.9(3),b = 1141.4(4),c = 1180.0(3)pm,Z 4,787结构因子和50个变量的R = 0.022。两种结构都可以描述为不同原子层的堆积。这些层由锌原子致密地填充,或者由钛和锌原子致密地较少。两种结构均包含相对较大的空隙,并且建议这些空隙被锌原子的非键合电子填充。 (C)1995 Academic Press,Inc. [参考:17]

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