首页> 外文期刊>The American mineralogist >Crystal structure of the high-pressure phase of calcium hydroxide, portlandite: In situ powder and single-crystal X-ray diffraction study
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Crystal structure of the high-pressure phase of calcium hydroxide, portlandite: In situ powder and single-crystal X-ray diffraction study

机译:氢氧化钙,钙钛矿高压相的晶体结构:原位粉末和单晶X射线衍射研究

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摘要

The crystal structure of a high-pressure phase of calcium hydroxide, Ca(OH)_2 (portlandite), was clarified for the first time using the combination of in situ single-crystal and powder X ray diffraction measurements at high pressure and room temperature. A diamond-anvil cell with a wide opening angle and cell-assembly was improved for single-crystal X ray diffraction experiments, which allowed us to successfully observe Bragg reflections in a wide range of reciprocal space. The transition occurred at 6 GPa and the crystal structure of the high-pressure phase was determined to be monoclinic at 8.9 GPa and room temperature [I121; a = 5.8882(10), b = 6.8408(9), c = 8.9334(15) ?, β = 104.798(15)°]. The transition involved a decrease in molar volume by approximately 5.8%. A comparison of the structures of the low- and high-pressure phases indicates that the transition occurs by a shift of CaO _6 octahedral layers in the a-b plane along the a-axis, accompanied by up-and-down displacements of Ca atoms from the a-b plane. The crystal structure of this high-pressure phase is considered to be an intermediate state between the low-pressure phase and the high-pressure-high-temperature phase. The complicated diffraction patterns of the high-pressure phase suggest that the phase transition occurred toward three directions around the c-axis of the low-pressure phase. This explains the difficulties encountered in previous structural analyses. The present results will provide key information for discussing the behavior of hydrogen bonds in these hydrous minerals under pressure.
机译:首次结合使用原位单晶和粉末X射线衍射测量在高压和室温下首次阐明了氢氧化钙高压相Ca(OH)_2(钙铁矿)的晶体结构。对于单晶X射线衍射实验,改进了具有大张角和单元组装的金刚石-砧盒,这使我们能够在宽范围的倒易空间中成功观察到布拉格反射。转变发生在6 GPa,并且在8.9 GPa和室温下高压相的晶体结构被确定为单斜晶[I121; a = 5.8882(10),b = 6.8408(9),c = 8.9334(15)α,β= 104.798(15)°]。该转变涉及摩尔体积减少约5.8%。低压相和高压相结构的比较表明,过渡是通过CaO _6八面体层沿a轴在ab平面中的移动而发生的,同时伴随Ca原子相对于a轴的向上和向下位移。 Ab飞机。该高压相的晶体结构被认为是低压相与高压高温相之间的中间状态。高压相的复杂衍射图表明,相变发生在围绕低压相c轴的三个方向上。这解释了以前的结构分析中遇到的困难。目前的结果将提供关键信息,以讨论在压力下这些含水矿物中氢键的行为。

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