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Sb2O4 at high pressures and high temperatures

机译:高压高温下的Sb2O4

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Investigations on Sb2O4 at high pressure and temperature have been performed up to 600 degrees C and up to 27.3 GPa. The so-called "high temperature" phase (beta-Sb2O4) was obtained following pressure increase at ambient temperature and at relatively low temperatures. Thus, in contrast to previous perceptions, beta-Sb2O4 is the modification more stable at high pressures, i.e., at low temperatures. The fact that the metastable alpha-form is typically obtained through the conventional way of preparation has to be attributed to kinetic effects. The pressure-induced phase transitions have been monitored by in-situ X-ray diffraction in a diamond anvil cell, and confirmed ex-situ, by X-ray diffraction at ambient conditions, following temperature decrease and decompression in large volume devices. Bulk modulus values have been derived from the press ure-induced volume changes at room temperature, and are 143 GPa for alpha-Sb2O4 and 105 GPa for the beta-Sb2O4. (c) 2005 Elsevier Inc. All rights reserved.
机译:在高达600摄氏度和高达27.3 GPa的高温和高压下对Sb2O4进行了研究。在环境温度和相对较低的温度下增加压力后,获得了所谓的“高温”相(β-Sb2O4)。因此,与以前的看法相反,β-Sb2 O 4是在高压下,即在低温下更稳定的修饰。通常通过常规制备方法获得亚稳态α-形式的事实必须归因于动力学作用。压力诱导的相变已通过金刚石砧座中的原位X射线衍射进行了监测,并在环境条件下随着大体积设备中的温度降低和减压而通过X射线衍射进行了非原位确认。体积模量值是由室温下压力引起的体积变化得出的,α-Sb2O4为143 GPa,β-Sb2O4为105 GPa。 (c)2005 Elsevier Inc.保留所有权利。

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