Defect Control of Nickel Sulfide by Heat-Treatment in Sulfur Atmosphere
Author:
Affiliation:
1. Department of Materials Science, Faculty of Engineering, Tohoku University
2. Graduate School, Tohoku University
3. Visiting Scientist to Tohoku University
Publisher
Japan Institute of Metals
Subject
General Engineering
Link
https://www.jstage.jst.go.jp/article/matertrans1960/20/3/20_3_89/_pdf
Reference19 articles.
1. 1) T. Rosenqvist: J. Iron Steel Inst., 176 (1954), 37.
2. 2) G. Kullerud and R. A. Yund: J. Petrology, 3 (1962), 126.
3. 3) J. L. Horwood, L. G. Ripley, M. G. Townsend and R. J. Tremblay: J. Appl. Phys., 42 (1971), 1476.
4. 4) M. Laffitte: Bull. Soc. Chim. France, (1959), 1211.
5. 5) R. G. Arnord and O. P. Malik: Econ. Geol., 70 (1975), 176.
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1. Heat capacity and thermodynamic properties of millerite from 298.15 to 660 K and NiAs-type nickel(II) sulfide from 260 to 1000 K. thermodynamics of the NiAs-type to millerite transition;Thermochimica Acta;1995-11
2. Statistical model for phases with NiAs-type and closely related structures;Journal of Alloys and Compounds;1993-10
3. Growth of NiS2 single crystals by sublimation under controlled sulfur pressure;Journal of Crystal Growth;1993-04
4. A 2a2a3c superstructure in hexagonal Ni1−xS: a study by means of electron diffraction and HRTEM;Journal of Crystal Growth;1993-01
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