Misfit stabilized embedded nanoparticles in metallic alloys
Nanoscale inhomogeneities are typical for numerous metallic alloys and crucially important for their practical applications. At the same time, stabilization mechanisms of such a state are poorly understood. We present a general overview of the problem, together with a more detailed discussion of the...
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Veröffentlicht in: | Physical chemistry chemical physics : PCCP 2015-01, Vol.17 (41), p.27249-27257 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Nanoscale inhomogeneities are typical for numerous metallic alloys and crucially important for their practical applications. At the same time, stabilization mechanisms of such a state are poorly understood. We present a general overview of the problem, together with a more detailed discussion of the prototype example, namely, Guinier-Preston zones in Al-based alloys. It is shown that coherent strain due to a misfit between inclusion and host crystal lattices plays a decisive role in the emergence of the inhomogeneous state. We suggest a model explaining the formation of ultrathin plates (with the thickness of a few lattice constants) typical for Al-Cu alloys. Discreteness of the array of misfit dislocations and long-ranged elastic interactions between them are the key ingredients of the model. This opens a way for a general understanding of the nature of (meta)stable embedded nanoparticles in practically important systems.
Nanoscale inhomogeneities are typical for numerous metallic alloys and crucially important for their practical applications. |
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ISSN: | 1463-9076 1463-9084 |
DOI: | 10.1039/c5cp04641f |