New routes for improving adhesion at the metal/α-AlO(0001) interface
With the advent of new steel grades, galvanic protection by zinc coating faces a new paradigm. Indeed, enrichment in strengthening elements prone to oxidation, such as Al, Mn, and Si, leads to the formation of oxide films that are poorly wet by zinc. We study herein routes for the improvement of adh...
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Veröffentlicht in: | Physical chemistry chemical physics : PCCP 2016-01, Vol.18 (4), p.332-339 |
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Zusammenfassung: | With the advent of new steel grades, galvanic protection by zinc coating faces a new paradigm. Indeed, enrichment in strengthening elements prone to oxidation, such as Al, Mn, and Si, leads to the formation of oxide films that are poorly wet by zinc. We study herein routes for the improvement of adhesion at the model Zn/α-Al
2
O
3
interface by the addition of metals. As a first step, with the help of
ab initio
results on the adsorption characteristics of transition metal adatoms at α-alumina surfaces, we establish and rationalize clear trends in both the behavior of metal-alumina interaction strength and the relative thermodynamic stability of configurations with weakly and strongly bound metal adatoms. The reasons for the enhanced binding strength of transition metals, such as Cr, maintained regardless of the precise alumina termination and the surface charge state are pointed out. On these grounds, possible improvements of adhesion under realistic conditions are discussed. It is predicted that enrichment in transition metals, such as Cr, may produce strongly adhesive interfaces that lead to cohesive cleavage.
Enrichment in transition metals improves adhesion at alumina/zinc interface. |
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ISSN: | 1463-9076 1463-9084 |
DOI: | 10.1039/c5cp06435j |