{"id":{"repo_id":"soton","oai_identifier":"oai:eprints.soton.ac.uk:173963"},"canonical_url":"https://search.dev.ndltd.org/etd/soton/oai:eprints.soton.ac.uk:173963","repository":{"repo_id":"soton","name":"University of Southampton","base_url":"https://eprints.soton.ac.uk/cgi/oai2"},"display":{"title":"Synthesis, structure and properties of heavy metal pyrochlore oxides","abstract":"Many interesting and often exotic magnetic phenomena have been observed over the<br/>past twenty years in the family of the heavy metal pyrochlore oxides, A2B2O6O’. In<br/>these systems, competing interactions are common and tend to emerge mainly at low<br/>temperatures. Magnetic properties are related to the contribution of d orbitals that transition<br/>metal (TM) offer and their interplay with the positive contribution coming from<br/>the cation sitting on the A site.<br/><br/>The work described in this thesis explores the effects of chemical substitution of the<br/>A site cation on the symmetry and the properties of a number of pyrochlores containing<br/>TM of the second and third transition row, such as Ir, Ru, Mo and Os. Depending if<br/>this site is fully occupied and on the radius size the behaviour of the resulting material<br/>can change significantly. The defect pyrochlore family AOs2O6 (A = Cs, Rb, K)<br/>was studied in detail following the attention that its members attracted for having been<br/>the first materials, belonging to this subgroup, to exhibit superconducting properties<br/>[1, 2, 3] and for the diversity in their properties. In these compounds, the smaller the<br/>ionic radius of an element, the weaker is the bond to the structure. As a result, the<br/>temperature dependence of their energy becomes quite different from normal lattice<br/>vibrations and gives interesting low temperature behaviours.<br/><br/>The effect of replacing the weak bonded potassium ions on the structures and superconducting<br/>properties of the AOs2O6 phases has also been studied. The ability to<br/>exchange the A-type in pyrochlores is well known and leads to applications for example<br/>in nuclear clean-up. Thus the ion exchange of K+ by smaller cations such as Li+<br/>or Na+ has been investigated with the aim of synthesising compounds which cannot be<br/>obtained by direct synthesis. New defect pyrochlore materials, AA’Os2O6 (A’ = Li+,<br/>Na+) have been synthesised together with hydrated derivatives, AA’OsO6.nH2O. Parent<br/>materials were obtained by ion exchange in non-aqueous solvents under strictly dry<br/>conditions. A Ba-based osmium oxide pyrochlore, Ba(Os2O6)2.H2O was also synthesised,<br/>for the first time, from the K-osmate starting material by ion-exchange methods<br/>in aqueous medium.<br/><br/>In this work, diffraction techniques, X- ray and neutron powder diffraction, were<br/>employed and found suitable for detecting the change in cation and anion location<br/>and general structure investigation.These structural descriptions are correlated with<br/>the measured superconducting properties and theoretical descriptions of variations in<br/>the Tc in these systems as a function of cation size and rattling.","abstract_html":"Many interesting and often exotic magnetic phenomena have been observed over the&lt;br/&gt;past twenty years in the family of the heavy metal pyrochlore oxides, A2B2O6O’. In&lt;br/&gt;these systems, competing interactions are common and tend to emerge mainly at low&lt;br/&gt;temperatures. Magnetic properties are related to the contribution of d orbitals that transition&lt;br/&gt;metal (TM) offer and their interplay with the positive contribution coming from&lt;br/&gt;the cation sitting on the A site.&lt;br/&gt;&lt;br/&gt;The work described in this thesis explores the effects of chemical substitution of the&lt;br/&gt;A site cation on the symmetry and the properties of a number of pyrochlores containing&lt;br/&gt;TM of the second and third transition row, such as Ir, Ru, Mo and Os. Depending if&lt;br/&gt;this site is fully occupied and on the radius size the behaviour of the resulting material&lt;br/&gt;can change significantly. The defect pyrochlore family AOs2O6 (A = Cs, Rb, K)&lt;br/&gt;was studied in detail following the attention that its members attracted for having been&lt;br/&gt;the first materials, belonging to this subgroup, to exhibit superconducting properties&lt;br/&gt;[1, 2, 3] and for the diversity in their properties. In these compounds, the smaller the&lt;br/&gt;ionic radius of an element, the weaker is the bond to the structure. As a result, the&lt;br/&gt;temperature dependence of their energy becomes quite different from normal lattice&lt;br/&gt;vibrations and gives interesting low temperature behaviours.&lt;br/&gt;&lt;br/&gt;The effect of replacing the weak bonded potassium ions on the structures and superconducting&lt;br/&gt;properties of the AOs2O6 phases has also been studied. The ability to&lt;br/&gt;exchange the A-type in pyrochlores is well known and leads to applications for example&lt;br/&gt;in nuclear clean-up. Thus the ion exchange of K+ by smaller cations such as Li+&lt;br/&gt;or Na+ has been investigated with the aim of synthesising compounds which cannot be&lt;br/&gt;obtained by direct synthesis. New defect pyrochlore materials, AA’Os2O6 (A’ = Li+,&lt;br/&gt;Na+) have been synthesised together with hydrated derivatives, AA’OsO6.nH2O. Parent&lt;br/&gt;materials were obtained by ion exchange in non-aqueous solvents under strictly dry&lt;br/&gt;conditions. A Ba-based osmium oxide pyrochlore, Ba(Os2O6)2.H2O was also synthesised,&lt;br/&gt;for the first time, from the K-osmate starting material by ion-exchange methods&lt;br/&gt;in aqueous medium.&lt;br/&gt;&lt;br/&gt;In this work, diffraction techniques, X- ray and neutron powder diffraction, were&lt;br/&gt;employed and found suitable for detecting the change in cation and anion location&lt;br/&gt;and general structure investigation.These structural descriptions are correlated with&lt;br/&gt;the measured superconducting properties and theoretical descriptions of variations in&lt;br/&gt;the Tc in these systems as a function of cation size and rattling.","abstract_has_math":false,"creators":["Galati, Rosa"],"institution":"University of Southampton","degree_name":"Ph.D.","degree_level":"doctoral","degree_discipline":null,"degree_department":null,"school":null,"contributors":[],"advisors":["Weller, Mark T."],"committee_chairs":[],"committee_members":[],"year":2010,"date_issued":"2010-03","date_published":"2010-03","updated_at":"2026-07-24T04:36:21Z","subjects":[],"languages":[],"rights":[],"rights_urls":[],"identifier_entries":[]},"links":{"outbound_url":null,"outbound_label":null,"outbound_source":null},"metadata_groups":[{"id":"people","label":"People","entries":[{"key":"dc:contributor.advisor","label":"Advisor","values":["Weller, Mark T."]},{"key":"dc:creator","label":"Author","values":["Galati, Rosa"]}]},{"id":"academic_context","label":"Academic Context","entries":[{"key":"dc:date","label":"Dc Date","values":["2010-03"]},{"key":"dc:date.issued","label":"Date","values":["2010-03"]},{"key":"dc:publisher.department","label":"Dc Publisher Department","values":["Chemistry (pre 2011 reorg)","School of Chemistry"]},{"key":"dc:publisher.institution","label":"Dc Publisher Institution","values":["University of Southampton"]},{"key":"dc:relation.isreferencedby","label":"Dc Relation Isreferencedby","values":["https://eprints.soton.ac.uk/173963/"]},{"key":"dc:type","label":"Dc Type","values":["Thesis"]},{"key":"dc:type.qualificationlevel","label":"Dc Type Qualificationlevel","values":["doctoral"]},{"key":"dc:type.qualificationname","label":"Dc Type Qualificationname","values":["Ph.D."]}]},{"id":"identifiers","label":"Identifiers","entries":[{"key":"dc:identifier.uri","label":"Identifier URI","values":["https://eprints.soton.ac.uk/173963/1/RG_PhDThesis.pdf"]}]},{"id":"additional","label":"Additional Metadata","entries":[{"key":"dc:description.abstract","label":"Abstract","values":["Many interesting and often exotic magnetic phenomena have been observed over the<br/>past twenty years in the family of the heavy metal pyrochlore oxides, A2B2O6O’. In<br/>these systems, competing interactions are common and tend to emerge mainly at low<br/>temperatures. Magnetic properties are related to the contribution of d orbitals that transition<br/>metal (TM) offer and their interplay with the positive contribution coming from<br/>the cation sitting on the A site.<br/><br/>The work described in this thesis explores the effects of chemical substitution of the<br/>A site cation on the symmetry and the properties of a number of pyrochlores containing<br/>TM of the second and third transition row, such as Ir, Ru, Mo and Os. Depending if<br/>this site is fully occupied and on the radius size the behaviour of the resulting material<br/>can change significantly. The defect pyrochlore family AOs2O6 (A = Cs, Rb, K)<br/>was studied in detail following the attention that its members attracted for having been<br/>the first materials, belonging to this subgroup, to exhibit superconducting properties<br/>[1, 2, 3] and for the diversity in their properties. In these compounds, the smaller the<br/>ionic radius of an element, the weaker is the bond to the structure. As a result, the<br/>temperature dependence of their energy becomes quite different from normal lattice<br/>vibrations and gives interesting low temperature behaviours.<br/><br/>The effect of replacing the weak bonded potassium ions on the structures and superconducting<br/>properties of the AOs2O6 phases has also been studied. The ability to<br/>exchange the A-type in pyrochlores is well known and leads to applications for example<br/>in nuclear clean-up. Thus the ion exchange of K+ by smaller cations such as Li+<br/>or Na+ has been investigated with the aim of synthesising compounds which cannot be<br/>obtained by direct synthesis. New defect pyrochlore materials, AA’Os2O6 (A’ = Li+,<br/>Na+) have been synthesised together with hydrated derivatives, AA’OsO6.nH2O. Parent<br/>materials were obtained by ion exchange in non-aqueous solvents under strictly dry<br/>conditions. A Ba-based osmium oxide pyrochlore, Ba(Os2O6)2.H2O was also synthesised,<br/>for the first time, from the K-osmate starting material by ion-exchange methods<br/>in aqueous medium.<br/><br/>In this work, diffraction techniques, X- ray and neutron powder diffraction, were<br/>employed and found suitable for detecting the change in cation and anion location<br/>and general structure investigation.These structural descriptions are correlated with<br/>the measured superconducting properties and theoretical descriptions of variations in<br/>the Tc in these systems as a function of cation size and rattling."]},{"key":"dc:format","label":"Dc Format","values":["text"]},{"key":"dc:title","label":"Title","values":["Synthesis, structure and properties of heavy metal pyrochlore oxides"]}]}],"canonical_facts":{"dc:contributor.advisor":["Weller, Mark T."],"dc:creator":["Galati, Rosa"],"dc:date":["2010-03"],"dc:date.issued":["2010-03"],"dc:description.abstract":["Many interesting and often exotic magnetic phenomena have been observed over the<br/>past twenty years in the family of the heavy metal pyrochlore oxides, A2B2O6O’. In<br/>these systems, competing interactions are common and tend to emerge mainly at low<br/>temperatures. Magnetic properties are related to the contribution of d orbitals that transition<br/>metal (TM) offer and their interplay with the positive contribution coming from<br/>the cation sitting on the A site.<br/><br/>The work described in this thesis explores the effects of chemical substitution of the<br/>A site cation on the symmetry and the properties of a number of pyrochlores containing<br/>TM of the second and third transition row, such as Ir, Ru, Mo and Os. Depending if<br/>this site is fully occupied and on the radius size the behaviour of the resulting material<br/>can change significantly. The defect pyrochlore family AOs2O6 (A = Cs, Rb, K)<br/>was studied in detail following the attention that its members attracted for having been<br/>the first materials, belonging to this subgroup, to exhibit superconducting properties<br/>[1, 2, 3] and for the diversity in their properties. In these compounds, the smaller the<br/>ionic radius of an element, the weaker is the bond to the structure. As a result, the<br/>temperature dependence of their energy becomes quite different from normal lattice<br/>vibrations and gives interesting low temperature behaviours.<br/><br/>The effect of replacing the weak bonded potassium ions on the structures and superconducting<br/>properties of the AOs2O6 phases has also been studied. The ability to<br/>exchange the A-type in pyrochlores is well known and leads to applications for example<br/>in nuclear clean-up. Thus the ion exchange of K+ by smaller cations such as Li+<br/>or Na+ has been investigated with the aim of synthesising compounds which cannot be<br/>obtained by direct synthesis. New defect pyrochlore materials, AA’Os2O6 (A’ = Li+,<br/>Na+) have been synthesised together with hydrated derivatives, AA’OsO6.nH2O. Parent<br/>materials were obtained by ion exchange in non-aqueous solvents under strictly dry<br/>conditions. A Ba-based osmium oxide pyrochlore, Ba(Os2O6)2.H2O was also synthesised,<br/>for the first time, from the K-osmate starting material by ion-exchange methods<br/>in aqueous medium.<br/><br/>In this work, diffraction techniques, X- ray and neutron powder diffraction, were<br/>employed and found suitable for detecting the change in cation and anion location<br/>and general structure investigation.These structural descriptions are correlated with<br/>the measured superconducting properties and theoretical descriptions of variations in<br/>the Tc in these systems as a function of cation size and rattling."],"dc:format":["text"],"dc:identifier.uri":["https://eprints.soton.ac.uk/173963/1/RG_PhDThesis.pdf"],"dc:publisher.department":["Chemistry (pre 2011 reorg)","School of Chemistry"],"dc:publisher.institution":["University of Southampton"],"dc:relation.isreferencedby":["https://eprints.soton.ac.uk/173963/"],"dc:title":["Synthesis, structure and properties of heavy metal pyrochlore oxides"],"dc:type":["Thesis"],"dc:type.qualificationlevel":["doctoral"],"dc:type.qualificationname":["Ph.D."]},"updated_at":"2026-07-24T04:36:21Z"}