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首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Energetics of cubic and monoclinic yttrium oxide polymorphs: Phase transitions, surface enthalpies, and stability at the nanoscale
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Energetics of cubic and monoclinic yttrium oxide polymorphs: Phase transitions, surface enthalpies, and stability at the nanoscale

机译:立方晶系和单斜晶系氧化钇晶型的能量学:相变,表面焓和纳米级稳定性

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摘要

The energetics of Y2O3 cubic (C-type) and monoclinic (B-type) polymorphs as a function of surface area have been studied by high-temperature oxide melt solution calorimetry and water adsorption calorimetry. The hydrated surface of the monoclinic phase has a lower surface enthalpy (0.64 +/- 0.49 J/m(2)) than that of the cubic (1.25 +/- 0.17 J/m(2)). However, the anhydrous surface of the monoclinic form is less stable (surface enthalpy = 2.78 +/- 0.49 J/m(2)) than that of the cubic (1.66 +/- 0.14 J/m(2)). The phase transformation enthalpy (monoclinic to cubic) for coarse Y2O3 is -21.8 3.2 kJ/mol. An energetic crossover is suggested between the polymorphs under ambient conditions, in which the surfaces are hydrated, at a size of 7 +/- 6 nm; however, anhydrous monoclinic yttria of any particle size is thermodynamically metastable at atmosphere pressure. Surface hydration controls the energetic landscape of Y2O3 polymorphs. The phase transformation process of monoclinic nanocrystals to the cubic phase was also studied using measurements of surface area, X-ray diffraction, and differential scanning calorimetry.
机译:通过高温氧化物熔融溶液量热法和吸水量热法研究了Y2O3立方(C型)和单斜晶(B型)多晶型随表面积变化的能量。单斜相的水合表面具有比立方水合物的表面焓(1.25 +/- 0.17 J / m(2))低的表面焓(0.64 +/- 0.49 J / m(2))。但是,单斜晶形式的无水表面稳定性不如立方表面(1.66 +/- 0.14 J / m(2))(表面焓= 2.78 +/- 0.49 J / m(2))。粗Y 2 O 3的相变焓(单斜晶至立方晶)为-21.8 3.2 kJ / mol。建议在环境条件下多晶型物之间进行能量交换,其中表面水合,尺寸为7 +/- 6 nm。但是,任何大小的无水单斜晶钇在大气压下都是热力学上稳定的。表面水合作用控制Y2O3多晶型物的能量分布。还使用表面积的测量,X射线衍射和差示扫描量热法研究了单斜纳米晶体向立方相的相变过程。

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