Effects of anharmonic strain on the phase stability of epitaxial films and superlattices: Applications to noble metals
Creators
- 1. National Renewable Energy Laboratory, Golden, Colorado80401 (United States)
Description
Epitaxial strain energies of epitaxial films and bulk superlattices are studied via first-principles total-energy calculations using the local-density approximation. Anharmonic effects due to large lattice mismatch, beyond the reach of the harmonic elasticity theory, are found to be very important in Cu/Au (lattice mismatch 12%), Cu/Ag (12%), and Ni/Au (15%). We find that left-angle 001 right-angle is the elastically soft direction for biaxial expansion of Cu and Ni, but it is left-angle 201 right-angle for large biaxial compression of Cu, Ag, and Au. The stability of superlattices is discussed in terms of the coherency strain and interfacial energies. We find that in phase separating systems such as Cu-Ag the superlattice formation energies decrease with superlattice period, and the interfacial energy is positive. Superlattices are formed easiest on (001) and hardest on (111) substrates. For ordering systems, such as Cu-Au and Ag-Au, the formation energy of superlattices increases with period, and interfacial energies are negative. These superlattices are formed easiest on (001) or (110) and hardest on (111) substrates. For Ni-Au we find a hybrid behavior: superlattices along left-angle 111 right-angle and left-angle 001 right-angle behave like phase separating systems, while for left-angle 110 right-angle they behave like ordering systems. Finally, recent experimental results on epitaxial stabilization of disordered Ni-Au and Cu-Ag alloys, immiscible in the bulk form, are explained in terms of destabilization of the phase separated state due to lattice mismatch between the substrate and constituents. copyright 1998 The American Physical Society
Additional details
Publishing Information
- Journal Title
- Physical Review. B, Condensed Matter
- Journal Volume
- 57
- Journal Issue
- 8
- Journal Page Range
- p. 4816-4828
- ISSN
- 0163-1829
- CODEN
- PRBMDO
INIS
- Country of Publication
- United States
- Country of Input or Organization
- United States
- INIS RN
- 29041142
- Subject category
- S75: CONDENSED MATTER PHYSICS, SUPERCONDUCTIVITY AND SUPERFLUIDITY;
- Descriptors DEI
- BINARY ALLOY SYSTEMS; COPPER ALLOYS; ELASTICITY; EPITAXY; GOLD ALLOYS; INTERFACES; NICKEL ALLOYS; ORDER-DISORDER TRANSFORMATIONS; PHASE STABILITY; SEGREGATION; SILVER ALLOYS; STRAINS; SUPERLATTICES; SURFACE ENERGY; THIN FILMS
- Descriptors DEC
- ALLOY SYSTEMS; ALLOYS; CRYSTAL GROWTH METHODS; FILMS; MECHANICAL PROPERTIES; PHASE TRANSFORMATIONS; STABILITY; TRANSITION ELEMENT ALLOYS