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Molar heat capacities of La2Mo2O9 and La1.9Sr0.1MO209-δ
引用本文:Baijun Yan Jianhua Liu Yunduo Dai Qifeng Shu Zhihua Ren. Molar heat capacities of La2Mo2O9 and La1.9Sr0.1MO209-δ[J]. 北京科技大学学报(英文版), 2007, 14(5): 395-398. DOI: 10.1016/S1005-8850(07)60078-4
作者姓名:Baijun Yan Jianhua Liu Yunduo Dai Qifeng Shu Zhihua Ren
作者单位:Metallurgical and Ecological Engineering School, University of Science and Technology Beijing, Beijing 100083, China
基金项目:This work was financially supported by the National Natural Science Foundation of China (No.50604002).
摘    要:The molar heat capacities of La2Mo209 and La1.9Sr0.1MO209-δ were obtained using the differential scanning calorimetry (DSC) technique in a temperature range from 298 to 1473 K. The DSC curve of La2Mo209 showed an endothermal peak around 834 K corresponding to a first-order monoclinic-cubic phase transition, and the enthalpy change accompanying this phase transition is 5.99 kJ/mol. No evident endothermal peak existed in the DSC curve of La1.9Sr0.1MO209-δ, but a broad thermal anomaly existed in its heat capacity curve at around 832 K. In addition, the heat capacity values of La2Mo209 and La1.9Sr0.1MO209-δ began to decrease at 1196 and 1330 K, respectively. The non-transitional heat capacity values of La2Mo209 and La1.9Sr0.1MO209-δ were formulated using multiple regression analysis in two temperature ranges.

关 键 词:热容量 相位转移 La2M0209 La1.9Sr0.1MO209-δ 微分热量测定法
收稿时间:2006-09-12
修稿时间:2006-09-12

Molar heat capacities of La2Mo2O9 and La1.9Sr0.1Mo2O9-δ
Baijun Yan, Jianhua Liu, Yunduo Dai, Qifeng Shu,Zhihua Ren. Molar heat capacities of La2Mo2O9 and La1.9Sr0.1Mo2O9-δ[J]. Journal of University of Science and Technology Beijing, 2007, 14(5): 395-398. DOI: 10.1016/S1005-8850(07)60078-4
Authors:Baijun Yan   Jianhua Liu   Yunduo Dai   Qifeng Shu  Zhihua Ren
Affiliation:aMetallurgical and Ecological Engineering School, University of Science and Technology Beijing, Beijing 100083, China
Abstract:The molar heat capacities of La2Mo2O9 and La1.9Sr0.1Mo2O9-δ were obtained using the differential scanning calorimetry (DSC) technique in a temperature range from 298 to 1473 K. The DSC curve of La2Mo2O9 showed an endothermal peak around 834 K corresponding to a first-order monoclinic-cubic phase transition, and the enthalpy change accompanying this phase transition is 5.99 kJ/mol. No evident endothermal peak existed in the DSC curve of La1.9Sr0.1Mo2O9-δ, but a broad thermal anomaly existed in its heat capacity curve at around 832 K. In addition, the heat capacity values of La2Mo2O9 and La1.9Sr0.1Mo2O9-δ began to decrease at 1196 and 1330 K, respectively. The non-transitional heat capacity values of La2Mo2O9 and La1.9Sr0.1Mo2O9-δ were formulated using multiple regression analysis in two temperature ranges.
Keywords:heat capacity   phase transition   La2Mo2O9   La1.9Sr0.1Mo2O9-δ     DSC
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