Abstract

A combination of characterization methods (SEM, X-ray diffraction, DTA, neutron diffraction and phase diagram analyses) has been used to determine the actual composition of a complex intermetallic compound of nominal composition Pr 6Ni 2Si 3 where neither X-ray nor neutron diffraction alone are capable of differentiating between vacancies or Si substitution on one of the Ni sites due to the scattering factor of two Si substitutions being equivalent to one Ni atom plus a vacancy. Using a combination of quantitative phase analysis of the diffraction data based on Reitveld refinement, metallography and mass balance calculations, the correct stoichiometry was found to necessarily contain excess Si, and is close to the stoichiometry, Pr 6Ni 1.6Si 3.2. Nonetheless this composition still contains around 1% second phase following long term anneal. Due to the close proximity of neighboring phases, this corresponds to an error in stoichiometry of approximately 0.02%. Assuming similar occupancies of Si and Ni on the Ni sites for other members of the homologous series R ( n+2)( n+1) Ni n( n−1)+2 Si n( n+1) , compositions of Pr 5Ni 1.85Si 3.1 and Pr 15Ni 6.7Si 10.2 were predicted for n = 3 and n = 4 alloys, respectively, and verified experimentally. The approach present in this paper is applicable to many other systems.

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