首页> 外文期刊>International Journal of Quantum Chemistry >THERMOANALYTICAL STUDY, PHASE TRANSITIONS, AND DIMENSIONAL CHANGES OF ALPHA-ZR(HPO4)(2)CENTER-DOT-H2O LARGE CRYSTALS
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THERMOANALYTICAL STUDY, PHASE TRANSITIONS, AND DIMENSIONAL CHANGES OF ALPHA-ZR(HPO4)(2)CENTER-DOT-H2O LARGE CRYSTALS

机译:Alpha-ZR(HPO4)(2)CENTER-DOT-H2O大晶体的热分析研究,相变和尺寸变化

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摘要

Crystals of millimetric dimensions of layered alpha-Zr(HPO4)(2) . H2O start to lose hydration water at temperatures higher than 270 degrees C when heated at rates of 2-50 degrees C/min. This allowed the observation, at about 143 and 257 degrees C, of two new reversible phase transitions of monohydrate zirconium phosphate. The connected enthalpic effects were 3.8 +/- 0.2 and 2.7 +/- 0.1 kJ/mol, respectively. Measurements of the thickness of the crystal, along the perpendicular to the layers, were also performed as a function of the temperature. At temperatures very close to those of the two-phase transitions, the thickness of the crystal decreased by 0.69% and by a further 0.44% of its initial value. A thermal behavior very similar to that found for large crystals was observed when microcrystalline alpha-Zr(HPO4)(2) . H2O (average crystal size 1-10 mu m) was analyzed at very high heating rates (i.e., 50 degrees C/min). X-ray powder diffraction analysis revealed that the phase transitions involve a discontinuous decrease of the interlayer distance from 7.56 to 7.50 Angstrom at 134 degrees C, and to 7.43 Angstrom at 257 degrees C, in agreement with dilatometric data. Finally, some structural aspects involving the new phases and the possible relations with those already reported are discussed. (C) 1997 Academic Press. [References: 17]
机译:层状α-Zr(HPO4)(2)的毫米级晶体。当以2-50摄氏度/分钟的速度加热时,H2O在高于270摄氏度的温度下开始失去水合水。这允许在约143和257摄氏度下观察到一水合磷酸锆新的两个可逆相变。关联的焓效应分别为3.8 +/- 0.2和2.7 +/- 0.1 kJ / mol。沿垂直于层的晶体厚度的测量也作为温度的函数进行。在非常接近两相转变的温度下,晶体的厚度降低了0.69%,又降低了其初始值的0.44%。当微晶α-Zr(HPO4)(2)时,观察到与大晶体非常相似的热行为。在非常高的加热速率(即50摄氏度/分钟)下分析了H2O(平均晶体尺寸为1-10微米)。 X射线粉末衍射分析表明,相变涉及到层间距离的不连续减小,在134摄氏度时从7.56到7.50埃,在257摄氏度时从7.56埃到7.43埃,与膨胀计数据一致。最后,讨论了涉及新阶段的一些结构方面以及与已经报告的那些方面的可能关系。 (C)1997学术出版社。 [参考:17]

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