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A Study of Homogeneity of Solid Solutions of Cadmium Sulfide and Cadmium Selenide by X-Ray Fluorescence*

Published online by Cambridge University Press:  06 March 2019

Frank L. Chan
Affiliation:
Aerospace Research Laboratories Wright-Patterson Air Force Base, Ohio
Donald A. Brooks
Affiliation:
Aerospace Research Laboratories Wright-Patterson Air Force Base, Ohio
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Abstract

The homogeneity of solid solutions of cadmium selenide and cadmium sulfide has been investigated. Crystals of the solid solutions having different selenium contents were grown in the Aerospace Research Laboratories by the conventional methods as described in the earlier conferences. The composition of these solid solutions were analyzed chemically for their selenium content by a procedure perfected in the Aerospace Research Laboratories.

Crystals in the form of lumps were cut to optimum size suitable to be inserted into the commercially available sample holder. The selenium content of these crystals was ascertained by scanning the samples with stationary colljmators of small aperture. The spectrograph used for the present study was operated at 75 KVP and 50 mA. The target tube was constructed of molybdenum. The results from the chemical method were used to correlate the counts per second obtained from the X-ray spectrograph.

Type
Research Article
Copyright
Copyright © International Centre for Diffraction Data 1964

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Footnotes

*

This paper was submitted by Mr. Brooks in partial fulfilment for the M.S. degree, Air Force Institute of Technology, Wright-Patterson Air Force Base, Ohio. AU rights reserved by the U.S. Air Force.

References

1. Greene, L. C., Reynolds, D. C., Czyzak, S. J., and Baker, W. M., “Method for Growing Large CdS and ZnS Single Crystals,” J. Chem. Phys. 29(6) :13751380, 1958.Google Scholar
2. Chan, F. L., “Detection Confirmation and Determination of Trace Amounts of Selenium by X-Ray Methods, Advances in X-Ray Analysis, Vol. 7, William M. Mueller, Gavin R. Mallett, and Marie J. Fay (eds.), University of Denver, Plenum Press, New York, 1964, pp. 542554.Google Scholar
3. Heinrick, K. F. J., “X-Ray Probe with Collimation of the Secondary Beam,” Advances in X-Ray Analysis, Vol. 5, William M. Mueller (ed.), University of Denver, Plenum Press, New York, 1962, pp. 516526.Google Scholar
4. Mack, M. and Spielberg, N., “Statistical Factors in X-Ray Intensity Measurements,” Spectrockem. Acta 12:169178, 1958.Google Scholar
5. Birks, L. B. and Brown, D. M., “Precision in X-Ray Spectrochemical Analysis Fixed-Times vs. Fixed-Count,” Anal. Chem. 34:240241, Feb. 1962.Google Scholar
6. Liebhafsky, H. A., et al., X-Ray Absorption and Emission in Analytical Chemistry, John Wiley & Sons, Inc., 1960.Google Scholar
7. Birks, L. S., X-Ray Spectrochemtcal Analysis, Interscience Publishers, New York, 1959.Google Scholar
8. Chan, F. L., “Determination of ZnS and CdS in Solid Solutions of Small, Single Crystals Used for Semiconductors by X-Ray and Chemical Methods,” Advances in X-Ray Analysis, Vol. 5, William M. Mueller (éd.), University of Denver, Plenum Press, New York, 1962, pp. 142152.Google Scholar