Rouquette J, Kantor I, McCammon C A, Dmitriev V, Dubrovinsky L S
Bayerisches Geoinstitut, Universität Bayreuth, D-95440 Bayreuth, Germany.
Inorg Chem. 2008 Apr 7;47(7):2668-73. doi: 10.1021/ic701983w. Epub 2008 Mar 5.
High-pressure studies of (Mg(0.9)Fe(0.1))2SiO4 olivine were performed at ambient temperature using X-ray diffraction, Raman spectroscopy, and Mössbauer spectroscopy. At approximately 40 GPa, a change of compressibility associated with saturation of the anisotropic compression mechanism was detected. This change is interpreted to result from the appearance of Si2O7 dimer defects, as deduced from Raman spectroscopy; the appearance of such defects also accounts for the previously reported pressure-induced amorphization observed for this material upon additional compression. Furthermore, this behavior is followed by a spin crossover of Fe(2+) that occurs over a wide pressure range, as revealed by Mössbauer spectroscopy.
在环境温度下,使用X射线衍射、拉曼光谱和穆斯堡尔光谱对 (Mg(0.9)Fe(0.1))2SiO4 橄榄石进行了高压研究。在约40吉帕斯卡的压力下,检测到与各向异性压缩机制饱和相关的压缩性变化。根据拉曼光谱推断,这种变化被解释为是由Si2O7二聚体缺陷的出现导致的;这种缺陷的出现也解释了先前报道的该材料在进一步压缩时出现的压力诱导非晶化现象。此外,穆斯堡尔光谱显示,这种行为之后是Fe(2+)在很宽的压力范围内发生的自旋交叉。