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The thermodynamics of ammonium scheelites. III. An analysis of the heat capacity and related data of deuterated ammonium perrhenate ND4ReO4

机译:铵白钨的热力学。 III。氘代高铼酸铵ND4ReO4的热容及相关数据分析

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摘要

An analysis of the heat capacity of deuterated and undeuterated NH4ReO4 has been carried out in which the effects of the anisotropy of the thermal expansion have been considered, an approach hitherto not used for ammonium compounds. In the ammonium scheelites, the axial thermal expansion coefficients are very large, but of opposite sign, and as a result the volume of the scheelite lattice is nearly independent of temperature. It is shown that the correction from constant stress to constant strain results in a major contribution to the heat capacity of this highly anisotropic lattice. The difference between the experimental and calculated values of heat capacity, referred to as ΔCp, is expressed as the sum of the contributions from the anisotropy and the rotational heat capacity. The results of the analysis show that the rotational contribution is much smaller then previously thought. However, the exact contribution of the anisotropy cannot be calculated at this time because the elastic constants are not known. In calculating the heat capacity, maximum use has been made of external optical mode frequencies derived from spectroscopic measurements.
机译:已经进行了对氘代和可失阻的NH4RO4的热量的分析,其中已经考虑了热膨胀的各向异性的影响,该方法迄今为止不用于铵化合物。在铵的体钙岩中,轴向热膨胀系数非常大,但具有相反的符号,因此单座晶格的体积几乎与温度无关。结果表明,从恒​​定应力到恒定应变的校正导致对该高度各向异性晶格的热量的主要贡献。称为ΔCP的实验性和计算值之间的差异表示为来自各向异性和旋转热容量的贡献之和。分析结果表明,旋转贡献比以前思想要小得多。然而,目前不能计算各向异性的确切贡献,因为弹性常数是未知的。在计算热容量时,已经由源自光谱测量的外部光学模式频率进行了最大值。

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