Low-temperature heat capacities and thermodynamic properties of rare-earth triisothiocyanate hydrates (III) —Sm(NCS)3 · 6H2O, Gd(NCS)3 · 6H20, Yb(NCS)3 · 6H20 and Y(NCS)3 · 6H20

Author:

Tan Zhicheng,Matsuo Takasuke,Suga Hiroshi,Zhang Zhiying,Yin Jingzhi,Jiang Bengao,Sun Tongshan

Publisher

Springer Science and Business Media LLC

Subject

General Chemistry

Reference9 articles.

1. Tan Zhicheng, Matsuo, T., Suga, H.et al., Low-temperature heat capacities and thermodynamic properties of lanthanum and cerium triisothiocyanate hydrates (I) —La(NCS)3 · 7H20 and Ge(NCS)3 · 7H20.,Science in China, Ser. B, 1992, 35(4): 391.

2. Tan Zhicheng, Matsuo, T., Suga, H.et al., Low-temperature heat capacities and thermodynamic properties of rare-earth triisothiocyanate hydrates (II) —Pr(NCS)3 · 7H20 and Nd(NCS)3 · 7H20,Science in China, Ser. B, 1996, 39(3): 276.

3. Kishimoto, K., Suga, H., Seki, S., An on-line automated adiabatic calorimeter in the 13–300 K,Bull Chem Soc. Jpn., 1980, 53: 2748.

4. Matsuo, T., Suga, H., Adiabadic microcalorimeter for heat capacity measurements at low temperature,Thermochim. Acta, 1985, 88: 149.

5. Sorai, M., Kaji, K., Kaneko, Y., An automated adiabatic calorimeter for the temperature range from 13 to 530 K,J. Chem. Thermodyn, 1992, 24: 167.

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