Lin Qisheng, Corbett John D
Department of Chemistry, Iowa State University, Ames, IA 50011, USA.
Inorg Chem. 2004 Mar 22;43(6):1912-9. doi: 10.1021/ic030265p.
The newly reported icosahedral quasicrystalline phase approximately Sc(3)Cu(2.1)Zn(12.9) was approached through four synthetic, structural, and EDX analyses of the range of approximants formed by systematic substitutions of 0-4 Zn by Cu in the reported Sc(3)Zn(17) as well as for the corrected Sc(3)Zn(18) (ScZn(6)) composition. Structures of high yield products of the 0, 1, 2, 3 Cu atom steps all refined as isotypic Sc(3)Cu(y)Zn(18-y) phases (Im(-)3, Z = 8, a = 13.8311(5) to 13.7528(5) A for 0 < or = y < or =2.2), basically isostructural with RCd(6) phases known for many rare-earth elements. The present phases all exhibit the novel feature of disordered zinc tetrahedra in the center of four concentric polyhedral clusters: pentagonal dodecahedron (Zn/Cu), icosahedron (Sc), icosidodecahedron (Zn), and triacontahedron (Zn). The Cu tuning process reduces both the average electron count per atom (e/a) to 2.04 and the average atom size until major amounts of the zinc-poorer quasicrystal separate along with the present normal crystalline phase near four added Cu. The Cu is an important neighbor to the disordered Zn atoms. The approximant structure repeatedly exhibits components with pseudo-icosahedral symmetry.
通过对在报道的Sc(3)Zn(17)以及校正后的Sc(3)Zn(18)(ScZn(6))组成中用Cu系统取代0 - 4个Zn所形成的一系列近似相进行四种合成、结构和能谱分析,研究了新报道的近似二十面体准晶相Sc(3)Cu(2.1)Zn(12.9)。0、1、2、3个Cu原子步的高产率产物结构均精修为同型的Sc(3)Cu(y)Zn(18 - y)相(Im(-)3, Z = 8, 对于0≤y≤2.2,a = 13.8311(5)至13.7528(5) Å),基本上与许多稀土元素已知的RCd(6)相结构相同。目前的相在四个同心多面体簇的中心都表现出无序锌四面体的新特征:五角十二面体(Zn/Cu)、二十面体(Sc)、二十面体十二面体(Zn)和三十面体(Zn)。Cu调谐过程将每个原子的平均电子数(e/a)降低到2.04,并减小了平均原子尺寸,直到在接近四个添加的Cu时,大量贫锌准晶体与当前的正常晶相一起分离。Cu是无序Zn原子的重要相邻原子。近似相结构反复呈现具有准二十面体对称性的组分。