Heat capacity, entropy of Ln2(MoO4)3 (Ln = La, Sm, and Gd), and the high-temperature enthalpy of Ln2(MoO4)3 (Ln = Eu, Dy, and Ho)

被引:0
|
作者
V. M. Lazarev
Y. L. Suponitskiy
S. E. Liashenko
机构
[1] Mendeleev University of Chemical Technology,
关键词
low-temperature heat capacity; standard entropy; high-temperature enthalpy; adiabatic calorimetry; high-temperature microcalorimetry; rare earth elements (REEs); REE molybdates; Ln; (MoO; ); (Ln = La, Sm, Eu, Gd, Dy, and Ho);
D O I
暂无
中图分类号
学科分类号
摘要
The low-temperature heat capacity of Ln2(MoO4)3 (Ln = La, Sm, and Gd) is investigated by means of adiabatic calorimetry within the range of 60–300 K. The temperature dependences of the heat capacity are found and the values of the standard entropy are calculated, based on extrapolations to 0 K. Characteristic temperatures for molybdates are determined from the results of IR spectroscopic studies. The high-temperature enthalpy of Ln2(MoO4)3 (Ln = Eu, Dy, and Ho) is measured via high-temperature microcalorimetry, and the temperature dependence of heat capacity is calculated in the range of 298–1000 K. Since samarium and gadolinium molybdates are of the same structural type as terbium molybdate, we can estimate the anomaly of the heat capacity in the low-temperature region using the data for terbium molybdate and find the entropy of samarium and gadolinium molybdates.
引用
收藏
页码:911 / 913
页数:2
相关论文
共 50 条
  • [21] Subsolidus phase diagrams for the Tl2MoO4-Ln2(MoO4)3-Hf(MoO4)2 systems, where Ln = La-Lu
    V. G. Grossman
    B. G. Bazarov
    Zh. G. Bazarova
    Russian Journal of Inorganic Chemistry, 2008, 53 : 1788 - 1794
  • [22] Phase formation in the systems Li2MoO4-K2MoO4-Ln2(MoO4)3 (Ln = La, Nd, Dy, Er) and properties of triple molybdates LiKLn2(MoO4)4
    Basovich, OM
    Khaikina, EG
    Solodovnikov, SF
    Tsyrenova, GD
    JOURNAL OF SOLID STATE CHEMISTRY, 2005, 178 (05) : 1580 - 1588
  • [23] Synthesis and photoluminescence characteristics of Ln3+ (Ln = Sm, Er and Dy)-doped BaGd2(MoO4)4 phosphors
    Deng, Yaomin
    Yi, Shuangping
    Wang, Yinhai
    Xian, Jieqiang
    OPTICAL MATERIALS, 2014, 36 (08) : 1378 - 1383
  • [24] Luminescence and Energy Transfer of Li2Y4(MoO4)7: Ln3+ (Ln = Dy, Eu) Phosphors
    Zhao, Bing
    Chen, Feng
    Ru, Jingjing
    Guo, Feiyun
    Chen, Jianzhong
    ECS JOURNAL OF SOLID STATE SCIENCE AND TECHNOLOGY, 2021, 10 (05)
  • [25] Synthesis, luminescence and photometric characteristics of Ca0.5La(MoO4)2:Ln3+ (Ln = Eu, Tb, Dy) phosphors
    Krishnan, Rajagopalan
    Thirumalai, Jagannathan
    Mahalingam, Venkatakrishnan
    Mantha, Srinivas
    Lavanya, Manthramoorthy
    MATERIALS CHEMISTRY AND PHYSICS, 2015, 162 : 41 - 49
  • [26] K2MOO4-BAMOO4-LN2(MOO4)3 SYSTEMS WHERE LN=LA-LU,Y,SC
    KOZHEVNIKOVA, NM
    MOKHOSOEV, MV
    MURZAKHANOVA, II
    ALEKSEEV, FP
    ZHURNAL NEORGANICHESKOI KHIMII, 1990, 35 (12): : 3157 - 3159
  • [27] Optical spectroscopy of molybdates with composition Ln2Zr3(MoO4)9 (Ln: Eu, Tb)
    Sofich, D.
    Tushinova, Yu. L.
    Shendrik, R.
    Bazarov, B. G.
    Dorzhieva, S. G.
    Chimitova, O. D.
    Bazarova, J. G.
    OPTICAL MATERIALS, 2018, 81 : 71 - 77
  • [28] Low temperature fired Ln2Zr3(MoO4)9 (Ln=Sm, Nd) microwave dielectric ceramics
    Liu, Weiqiong
    Zuo, Ruzhong
    CERAMICS INTERNATIONAL, 2017, 43 (18) : 17229 - 17232
  • [29] PHASE CORRELATIONS IN CA(SR)MOO4-LN2(MOO4)3 (LN=PR-LU) SYSTEMS
    VAKULYUK, VV
    EVDOKIMOV, AA
    BEREZINA, TA
    ZHURNAL NEORGANICHESKOI KHIMII, 1982, 27 (07): : 1812 - 1814
  • [30] Efficient red phosphors Na5Ln(MoO4)4 : Eu3+ (Ln = La, Gd and Y) for white LEDs
    Guo, Chongfeng
    Gao, Fei
    Xu, Yan
    Liang, Lifang
    Shi, Frank G.
    Yan, Bohan
    JOURNAL OF PHYSICS D-APPLIED PHYSICS, 2009, 42 (09)