Negative entropy of mixing for vanadium-platinum solutions
Creators
- 1. California Institute of Technology, W. M. Keck Laboratory, mail 138-78, Pasadena, California 91125 (United States)
Description
The phonon densities of states for pure vanadium and the solid solutions V-6.25% Ni, Pd, Pt were determined from inelastic neutron scattering measurements. The solute atoms caused a large stiffening of the phonons, resulting in large, negative vibrational entropies of mixing. For V-6.25%Pt, the negative vibrational entropy of mixing exceeds the conventional positive chemical entropy of mixing. This negative total entropy of mixing should extend to lower concentrations of Pt, and the effect on the bcc solvus line is discussed. The experimental data were inverted to obtain interatomic force constants by using a Born-von Karman model with an iterative optimization algorithm. The stiffening of bonds responsible for the decrease of entropy was found to occur mainly in first-nearest-neighbor solute-host bonds, and correlates in part with the solute metallic radius
Additional details
Identifiers
Publishing Information
- Journal Title
- Physical Review Letters
- Journal Volume
- 93
- Journal Issue
- 18
- Journal Page Range
- p. 185704-185704.4
- ISSN
- 0031-9007
- CODEN
- PRLTAO
INIS
- Country of Publication
- United States
- Country of Input or Organization
- International Atomic Energy Agency (IAEA)
- INIS RN
- 36062794
- Subject category
- S36: MATERIALS SCIENCE;
- Resource subtype / Literary indicator
- Numerical Data
- Descriptors DEI
- ALGORITHMS; ATOMS; BCC LATTICES; CHEMICAL BONDS; ENTROPY; EXPERIMENTAL DATA; INELASTIC SCATTERING; INTERATOMIC FORCES; ITERATIVE METHODS; MIXING; NEUTRON DIFFRACTION; NICKEL ALLOYS; OPTIMIZATION; PALLADIUM ALLOYS; PHASE DIAGRAMS; PHONONS; PLATINUM ALLOYS; SOLID SOLUTIONS; SOLUTES; VANADIUM ALLOYS
- Descriptors DEC
- ALLOYS; CALCULATION METHODS; COHERENT SCATTERING; CRYSTAL LATTICES; CRYSTAL STRUCTURE; CUBIC LATTICES; DATA; DIAGRAMS; DIFFRACTION; DISPERSIONS; HOMOGENEOUS MIXTURES; INFORMATION; MATHEMATICAL LOGIC; MIXTURES; NUMERICAL DATA; PHYSICAL PROPERTIES; PLATINUM METAL ALLOYS; QUASI PARTICLES; SCATTERING; SOLUTIONS; THERMODYNAMIC PROPERTIES; TRANSITION ELEMENT ALLOYS
Optional Information
- Notes
- (c) 2004 The American Physical Society