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Volume 53, Issue 8, Pages 2369-2376 (May 2005)


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Diffusion rates of 3d transition metal solutes in nickel by first-principles calculations

M. Krčmara, C.L. FuaCorresponding Author Informationemail address, A. Janottia, R.C. Reedb

Received 5 November 2004; received in revised form 27 January 2005; accepted 30 January 2005.

Abstract 

First-principle calculations for the diffusion of 3d transition metal (TM) solutes in nickel demonstrate the existence of a higher diffusion energy barrier for solutes with smaller atomic sizes. The calculations reveal that smaller TM atoms are, actually, among the least compressible due to the formation of incompressible solute-host directional bonds. Magnetism is shown to have a profound effect on the solute diffusion trends across the 3d TM series: the existence of a local minimum in the diffusion energy barrier is accompanied by the occurrence of a maximum in the magnetic moment. The calculated diffusion rates disprove the traditional view that the diffusion of solutes is least rapid when the size misfit with the host is the greatest.

a Metals and Ceramics Division, Oak Ridge National laboratory, P.O. Box 2008, Oak Ridge, TN 37831-6114, USA

b Department of Metals and Materials Engineering, The University of British Columbia, 309-6350 Stores Road, Vancouver, Canada V6T 1Z4

Corresponding Author InformationCorresponding author. Tel.: +1 865 574 5161; fax: +1 865 574 7659

PII: S1359-6454(05)00073-X

doi:10.1016/j.actamat.2005.01.044


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