Li Bin, Corbett John D
Ames Laboratory, U.S. DOE and Department of Chemistry, Iowa State University, Ames, Iowa 50011, USA.
Inorg Chem. 2007 Oct 15;46(21):8812-8. doi: 10.1021/ic701127f. Epub 2007 Sep 22.
The title phases were synthesized via high-temperature solid-state methods and structurally characterized by single-crystal X-ray diffraction. The phase widths of both SrMg(x)In(4-x) (0.85 <or= x <or= 1.53) and BaMg(x)In(4-x) (0 <or= x <or= 1.79) are consistent with size matches between Ae and the encapsulating M-In cages. All compounds crystallize in body-centered tetragonal BaAl(4)-type structure (I4/mmm, Z = 2) except that SrMg(x)In(4-x), 0.85 <or= x <or= 1.24, occurs in the lower-symmetry space group (I4m2, Z = 2) and the atoms are all ordered at the composition SrMgIn(3). The substitution of the effectively smaller Mg or Zn atoms into the indium sublattice of the monoclinic SrIn(4) (C2/m) dramatically changes the structure into the tetragonal BaAl(4)-type structure. Compared with the Mg compounds in which all Mg occupy the basal 4d crystallographic site, Zn occupies the other 4e (apical) site in both BaZn(0.79(2))In(3.21) and SrZn(1.00(4))In(3.00). These differences are related to the interplay of size and electronic factors. The latter may be expressed by not only electronegativities but also total energies according to linear muffin-tin-orbital calculations.
通过高温固态法合成了标题相,并通过单晶X射线衍射对其结构进行了表征。SrMg(x)In(4 - x)(0.85≤x≤1.53)和BaMg(x)In(4 - x)(0≤x≤1.79)的相宽与Ae和封装的M - In笼之间的尺寸匹配一致。除了0.85≤x≤1.24的SrMg(x)In(4 - x)以较低对称性空间群(I4m2,Z = 2)出现且原子在SrMgIn(3)组成处全部有序排列外,所有化合物均结晶为体心四方BaAl(4)型结构(I4/mmm,Z = 2)。将有效较小的Mg或Zn原子取代到单斜SrIn(4)(C2/m)的铟亚晶格中,会使结构显著转变为四方BaAl(4)型结构。与所有Mg占据基面4d晶体学位置的Mg化合物相比,在BaZn(0.79(2))In(3.21)和SrZn(1.00(4))In(3.00)中,Zn占据另一个4e(顶点)位置。这些差异与尺寸和电子因素的相互作用有关。根据线性 muffin - tin - 轨道计算,后者不仅可以用电负性表示,还可以用总能量表示。