Bastow T J, Hobday M E, Smith M E, Whitfield H J
CSIRO Division of Materials Science and Technology, Clayton, Victoria, Australia.
Solid State Nucl Magn Reson. 1994 Apr;3(2):49-57. doi: 10.1016/0926-2040(94)90023-x.
A combination of X-ray and electron diffraction, electron microscopy and solid-state nuclear magnetic resonance (NMR) has been used to elucidate the structure and the ordering of Na2ZrO3. The diffraction data confirm a monoclinic crystal structure. A sample prepared by a conventional solid-state reaction of the components is shown by both X-ray diffraction and electron microscope imaging to have an extremely high concentration of planar defects associated with stacking disorder of the planes along the c-axis. The incidence of these defects is significantly reduced in a sample recrystallised from a bismuth oxide flux. NMR indicates that the local coordinations are well defined in both samples but with some sharpening of the spectra from the recrystallised sample indicative of the increase of long-range order. The 23Na magic angle spinning (MAS) NMR spectra clearly show three distinct sites with widely differing quadrupolar interaction parameters that can be related to the known site symmetries. Two distinct oxygen resonances are observed in the MAS NMR spectrum from an 17O-enriched sample while the static 91Zr NMR spectrum can be simulated with one set of interaction parameters.
X射线与电子衍射、电子显微镜以及固态核磁共振(NMR)相结合,已被用于阐明Na₂ZrO₃的结构和有序性。衍射数据证实其为单斜晶体结构。通过各组分的常规固态反应制备的样品,经X射线衍射和电子显微镜成像显示,沿c轴存在与平面堆叠无序相关的极高浓度的平面缺陷。在从氧化铋助熔剂中重结晶的样品中,这些缺陷的发生率显著降低。核磁共振表明,两个样品中的局部配位都定义明确,但重结晶样品的光谱有所锐化,表明长程有序性增加。²³Na魔角旋转(MAS)核磁共振谱清楚地显示出三个具有截然不同四极相互作用参数的不同位点,这些参数与已知的位点对称性相关。在富含¹⁷O的样品的MAS核磁共振谱中观察到两个不同的氧共振,而静态⁹¹Zr核磁共振谱可以用一组相互作用参数进行模拟。