Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5424133 | Surface Science | 2010 | 9 Pages |
Abstract
Cu dimer diffusion energy barrier on strained Cu(0Â 0Â 1) surfaces has been studied with nudged elastic band method (NEB) and embedded atom method (EAM). Dimer exchange and hopping mechanisms are chosen as the initial diffusion paths in the NEB method. It is shown here that the dimer exchange is dominant on tensile surfaces and the dimer hopping is dominant on compressive surfaces. For most strain conditions Cu dimer diffusion energy barrier is lower than Cu monomer diffusion barrier. The concerted movement of the remaining adatom toward the hopping adatom lowers the dimer hopping barrier. The adsorption induced relaxation makes the dimer exchange barriers lower than the monomer exchange barriers on tensile surfaces. Transition state theory is used to calculate the diffusion frequencies as a function of temperature. No surface crowdion is observed on the shear strained surfaces for the dimer diffusion.
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Physical Sciences and Engineering
Chemistry
Physical and Theoretical Chemistry
Authors
Zhiyao Duan, Wei Xiao,