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Effect of phosphorus concentration on the atomic distribution function of amorphous Pd-Ni-P alloys

Dixmier, Jean and Duwez, Pol (1973) Effect of phosphorus concentration on the atomic distribution function of amorphous Pd-Ni-P alloys. Journal of Applied Physics, 44 (3). pp. 1189-1193. ISSN 0021-8979. http://resolver.caltech.edu/CaltechAUTHORS:20120814-112428926

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Abstract

The effect of the phosphorus concentration on the atomic distribution function in amorphous alloys (Pd_(50)-Ni_(50))_(100−x)P_x in which x varies from 15 to 27.5 was investigated. The alloys were obtained by rapid quenching from the liquid state. The intensity of the first peak of the interference function decreases with increasing phosphorus content. The second peak has a definite shoulder on the right side for alloys low in phosphorus and this shoulder progressively disappears as the P concentration is increased. This feature was not found before in binary Ni-P alloys obtained by electrodeposition. From the atomic distribution functions it was possible to determine the metal‐to‐metal distances and the approximate metal‐to‐phosphorus distances.


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http://dx.doi.org/10.1063/1.1662326 DOIUNSPECIFIED
http://jap.aip.org/resource/1/japiau/v44/i3/p1189_s1PublisherUNSPECIFIED
Additional Information:© 1973 American Institute of Physics. Received 25 August 1972. Online Publication Date: 9 October 2003. Work supported by the U. S. Atomic Energy Commission.
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Atomic Energy CommissionUNSPECIFIED
Record Number:CaltechAUTHORS:20120814-112428926
Persistent URL:http://resolver.caltech.edu/CaltechAUTHORS:20120814-112428926
Official Citation: Effect of phosphorus concentration on the atomic distribution function of amorphous Pd-Ni-P alloys Jean Dixmier and Pol Duwez J. Appl. Phys. 44, 1189 (1973); http://dx.doi.org/10.1063/1.1662326
Usage Policy:No commercial reproduction, distribution, display or performance rights in this work are provided.
ID Code:33170
Collection:CaltechAUTHORS
Deposited By: Ruth Sustaita
Deposited On:14 Aug 2012 18:36
Last Modified:26 Dec 2012 15:58

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