The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition

<p>For a fixed configuration of ions on a given crystalline lattice, low energy excitations around the static average configuration can be thermally activated and will contribute to the entropy of the system. As such, phonons, spin-waves or electronic excitations have their own entropic contri...

Full description

Bibliographic Details
Main Author: Delaire, Olivier
Format: Others
Published: 2006
Online Access:https://thesis.library.caltech.edu/2113/1/ODelaire_Thesis.pdf
Delaire, Olivier (2006) The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/SDJF-E025. https://resolver.caltech.edu/CaltechETD:etd-05262006-160244 <https://resolver.caltech.edu/CaltechETD:etd-05262006-160244>
id ndltd-CALTECH-oai-thesis.library.caltech.edu-2113
record_format oai_dc
spelling ndltd-CALTECH-oai-thesis.library.caltech.edu-21132020-04-18T03:02:33Z The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition Delaire, Olivier <p>For a fixed configuration of ions on a given crystalline lattice, low energy excitations around the static average configuration can be thermally activated and will contribute to the entropy of the system. As such, phonons, spin-waves or electronic excitations have their own entropic contribution. This thesis investigates the entropic effects of lattice vibrations in transition metal alloys, both from experimental and computational points of view.</p> <p>Using inelastic neutron scattering, it is shown that a few percent of substitutional impurities from the transition metal series strongly affect the phonon density of states (DOS) of pure vanadium. Alloying with 6% Pt solutes produces a strong stiffening of the phonon DOS, inducing a large and negative vibrational entropy of mixing, which overcomes the increase in configurational entropy. A systematic study of chemical trends for different transition metal impurities was conducted. A previously unknown correlation is established between the vibrational entropy of alloying and the difference in electronegativity of the solute and the host. Density-functional theory calculations were conducted and confirmed the occurrence of systematic charge-transfers correlating with the electronegativity, which affect the interatomic force-constants and the phonons.</p> <p>The effect of impurities on the anomalous temperature-dependence of phonons in vanadium is investigated. It is found that the solutes which affect the phonon density of states most strongly at room temperature also suppress the anomalous temperature behavior. Electron-phonon and phonon-phonon couplings are examined as potential sources of this effect, through a careful accounting of their contributions to the heat capacity, based on inelastic neutron scattering experiments, calorimetry measurements and electronic structure calculations.</p> <p>Finally, the changes in the phonon DOS and the vibrational entropy across the low-temperature martensitic phase transformation in Fe71Ni29 are investigated. The respective contributions of the phonons and magnetism to the entropy of the direct and reverse transformation are evaluated from neutron scattering and differential scanning calorimetry measurements. A significant magnetic entropy is found in the reverse transformation, which is not present in the direct transformation. This result stresses the necessity to account for the respective contributions of all microscopic degrees of freedom in evaluating entropy changes in solid-solid phase transitions.</p> 2006 Thesis NonPeerReviewed application/pdf https://thesis.library.caltech.edu/2113/1/ODelaire_Thesis.pdf https://resolver.caltech.edu/CaltechETD:etd-05262006-160244 Delaire, Olivier (2006) The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/SDJF-E025. https://resolver.caltech.edu/CaltechETD:etd-05262006-160244 <https://resolver.caltech.edu/CaltechETD:etd-05262006-160244> https://thesis.library.caltech.edu/2113/
collection NDLTD
format Others
sources NDLTD
description <p>For a fixed configuration of ions on a given crystalline lattice, low energy excitations around the static average configuration can be thermally activated and will contribute to the entropy of the system. As such, phonons, spin-waves or electronic excitations have their own entropic contribution. This thesis investigates the entropic effects of lattice vibrations in transition metal alloys, both from experimental and computational points of view.</p> <p>Using inelastic neutron scattering, it is shown that a few percent of substitutional impurities from the transition metal series strongly affect the phonon density of states (DOS) of pure vanadium. Alloying with 6% Pt solutes produces a strong stiffening of the phonon DOS, inducing a large and negative vibrational entropy of mixing, which overcomes the increase in configurational entropy. A systematic study of chemical trends for different transition metal impurities was conducted. A previously unknown correlation is established between the vibrational entropy of alloying and the difference in electronegativity of the solute and the host. Density-functional theory calculations were conducted and confirmed the occurrence of systematic charge-transfers correlating with the electronegativity, which affect the interatomic force-constants and the phonons.</p> <p>The effect of impurities on the anomalous temperature-dependence of phonons in vanadium is investigated. It is found that the solutes which affect the phonon density of states most strongly at room temperature also suppress the anomalous temperature behavior. Electron-phonon and phonon-phonon couplings are examined as potential sources of this effect, through a careful accounting of their contributions to the heat capacity, based on inelastic neutron scattering experiments, calorimetry measurements and electronic structure calculations.</p> <p>Finally, the changes in the phonon DOS and the vibrational entropy across the low-temperature martensitic phase transformation in Fe71Ni29 are investigated. The respective contributions of the phonons and magnetism to the entropy of the direct and reverse transformation are evaluated from neutron scattering and differential scanning calorimetry measurements. A significant magnetic entropy is found in the reverse transformation, which is not present in the direct transformation. This result stresses the necessity to account for the respective contributions of all microscopic degrees of freedom in evaluating entropy changes in solid-solid phase transitions.</p>
author Delaire, Olivier
spellingShingle Delaire, Olivier
The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition
author_facet Delaire, Olivier
author_sort Delaire, Olivier
title The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition
title_short The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition
title_full The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition
title_fullStr The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition
title_full_unstemmed The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition
title_sort phonon entropy of transition metals and alloys: effects of impurities and of a martensitic phase transition
publishDate 2006
url https://thesis.library.caltech.edu/2113/1/ODelaire_Thesis.pdf
Delaire, Olivier (2006) The Phonon Entropy of Transition Metals and Alloys: Effects of Impurities and of a Martensitic Phase Transition. Dissertation (Ph.D.), California Institute of Technology. doi:10.7907/SDJF-E025. https://resolver.caltech.edu/CaltechETD:etd-05262006-160244 <https://resolver.caltech.edu/CaltechETD:etd-05262006-160244>
work_keys_str_mv AT delaireolivier thephononentropyoftransitionmetalsandalloyseffectsofimpuritiesandofamartensiticphasetransition
AT delaireolivier phononentropyoftransitionmetalsandalloyseffectsofimpuritiesandofamartensiticphasetransition
_version_ 1719313143878909952