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Metal-to-Semiconductor Transition in Hexagonal NiS
Rev. Mod. Phys. 40, 752 – Published 1 October, 1968
DOI: https://doi.org/10.1103/RevModPhys.40.752
Abstract
Recent electrical resistivity measurements have shown that the hexagonal form of stoichiometric NiS exhibits an abrupt metal-to-semiconductor transition at 264°K. Neutron diffraction studies have shown that a first-order paramagnetic-to-antiferromagnetic transition also occurs at 264°K. No crystal lattice distortion is observed at the transition nor detected at 4.2°K, suggesting that this may be a transition of the kind considered by Adler and Brooks. The measured magnetic moment at 4.2°K is 1.66±0.08 μβ and at 260°K it is 150.±0.10 μβ indicating that the sublattice magnetization is within 10% of saturation immediately upon ordering. The neutron data also shown that no more than about 1% of the Ni atoms migrate to tetragonal interstitial sites on warming from 4.2°K to room temperature. Thus, Ni atom migration apparently plays no part in this transition. The powder magnetic susceptibility is 2.24× emu/g at 300°K and is virtually temperature-independent above the transition. increases abruptly at 264°K by about 15% and exhibits some field-cooling effects. Studies on the compounds , for show that excess sulfur lowers the transition temperature.
References (12)
- D. Adler and H. Brooks, Phys. Rev. 155, 826 (1967)
- D. Adler, J. Feinleib, H. Brooks, and W. Paul, Phys. Rev. 155, 851 (1967)
- H. Kendrick, A. Arrot, and S. A. Werner, J. Appl. Phys. 39, 585 (1968)
- S. C. Abrahams, Phys. Rev. 130, 2230 (1963)
- L. L. Van Zandt, J. M. Honig, and J. B. Goodenough, J. Appl. Phys. 39, 594 (1968)
- J. T. Sparks and T. Komoto, J. Appl. Phys. 38, 715 (1968) 34, 1191 (1963)
- J. T. Sparks and T. Komoto, J. Phys. Radium 25, 567 (1964)
- J. T. Sparks and T. Komoto, Phys. Letters 25A, 398 (1967)
- B. W. Roberts, Phys. Rev. 104, 607 (1956)
- W. B. Pearson, A Handbook of Lattice Springs and Structures of Metals and Alloys (Pergamon Press, Oxford, England, 1967), Vol. 2
- H. Fröhlich, Quantum Theory of Atoms, Molecules and the Solid State, P.-O. Löwdin, Ed. (Academic Press Inc., New York, 1966)
- G. J. Hyland (to be published)