Isobe Masaaki, Onoda Mitsuko, Shizuya Mitsuyuki, Tanaka Masahiko, Takayama-Muromachi Eiji
National Institute for Materials Science (NIMS), 1-1 Namiki, Tsukuba, Ibaraki 305-0044, Japan.
J Am Chem Soc. 2007 Nov 28;129(47):14585-96. doi: 10.1021/ja072052v. Epub 2007 Nov 6.
The incommensurate modulated crystal structure of the new misfit-layer calcium cobalt oxide (Ca0.85OH)2alphaCoO2 was investigated using a superspace-group formalism with synchrotron X-ray diffraction data. The compound is a kind of composite crystal that consists of two interpenetrating subsystems, [CoO2]infinity layers containing triangular lattices formed by edge-sharing CoO6 octahedra, separated from each other by [2Ca0.85OH]infinity double-layered rock-salt-type slabs. Both the subsystems are monoclinic lattices with the unit cell parameters, a1 = 2.8180(4) A, b = 4.8938(6) A, c = 8.810(1) A, alpha0 = 95.75(3) degrees , and alpha(=|q|=a1/a2) = 0.57822(8), viz., a2 = 4.8736 A, with Z = 2. A possible superspace group is C2/m(alpha10)s0-C21/m(alpha(-1)10) for the respective subsystems. The atomic positions deviate from the average positions of the fundamental structure due to the incommensurable periodic interaction between the subsystems. A significant structural modulation was found in the [2Ca0.85OH] subsystem, whereas the modulation in the [CoO2] subsystem is less than in [2Ca0.85OH], due to the tight bonding of the close-packed CoO6 octahedra. The degree of modulation in the CoO2 layers, i.e., the potential modulation, is almost the same as those of other compounds of the misfit-layer cobalt oxides. Flattened CoO6 octahedra indicate hole doping into the CoO2 layers. The [2Ca0.85OH] blocks act as the charge reservoir layers, and the defect Ca ions are presumably the source of the holes.
利用超空间群形式和同步辐射X射线衍射数据研究了新型错配层钙钴氧化物(Ca0.85OH)2αCoO2的非公度调制晶体结构。该化合物是一种复合晶体,由两个相互贯穿的子系统组成,[CoO2]∞层包含由共边CoO6八面体形成的三角形晶格,它们被[2Ca0.85OH]∞双层岩盐型板层彼此隔开。两个子系统均为单斜晶格,晶胞参数为a1 = 2.8180(4)Å,b = 4.8938(6)Å,c = 8.810(1)Å,α0 = 95.75(3)°,且α(=|q|=a1/a2) = 0.57822(8),即a2 = 4.8736 Å,Z = 2。对于各个子系统,可能的超空间群为C2/m(α10)s0 - C21/m(α(-1)10)。由于子系统之间不可公度的周期性相互作用,原子位置偏离基本结构的平均位置。在[2Ca0.85OH]子系统中发现了显著的结构调制,而由于紧密堆积CoO6八面体的紧密键合,[CoO2]子系统中的调制小于[2Ca0.85OH]子系统。CoO2层中的调制程度,即电势调制,与其他错配层钴氧化物化合物的调制程度几乎相同。扁平的CoO6八面体表明空穴掺杂到CoO2层中。[2Ca0.85OH]块充当电荷储存层,缺陷Ca离子可能是空穴的来源。