Lithium conductivity in glasses of the Li2O-Al2O3-SiO2 system

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dc.identifier.uri http://dx.doi.org/10.15488/109
dc.identifier.uri http://www.repo.uni-hannover.de/handle/123456789/127
dc.contributor.author Ross, Sebastian
dc.contributor.author Welsch, Anna-Maria
dc.contributor.author Behrens, Harald
dc.date.accessioned 2015-11-19T12:59:55Z
dc.date.available 2015-11-19T12:59:55Z
dc.date.issued 2014-11-03
dc.identifier.citation Ross, Sebastian; Welsch, Anna-Maria; Behrens, Harald: Lithium conductivity in glasses of the Li2O-Al2O3-SiO2 system. In: Physical Chemistry Chemical Physics 17 (2015), Nr. 1, S. 465-474. DOI: http://dx.doi.org/10.1039/c4cp03609c   
dc.description.abstract To improve the understanding of Li-dynamics in oxide glasses, i.e. the effect of [AlO4](-) tetrahedra and non-bridging oxygens on the potential landscape, electrical conductivity of seven fully polymerized and partly depolymerized lithium aluminosilicate glasses was investigated using impedance spectroscopy (IS). Lithium is the only mobile particle in these materials. Data derived from IS, i. e. activation energies, preexponential factors and diffusivities for lithium, are interpreted in light of Raman spectroscopic analyses of local structures in order to identify building units, which are crucial for lithium dynamics and migration. In polymerized glasses (compositional join LiAlSiO4-LiAlSi4O10) the direct current (DC) electrical conductivity continuously increases with increasing lithium content while lithium diffusivity is not affected by the Al/ Si ratio in the glasses. Hence, the increase in electrical conductivity can be solely assigned to lithium concentration in the glasses. An excess of Li with respect to Al, i.e. the introduction of non-bridging oxygen into the network, causes a decrease in lithium mobility in the glasses. Activation energies in polymerized glasses (66 to 70 kJ mol(-1)) are significantly lower than those in depolymerized networks (76 to 78 kJ mol(-1)) while pre-exponential factors are nearly constant across all compositions. Comparison of the data with results for lithium silicates from the literature indicates a minimum in lithium diffusivity for glasses containing both aluminium tetrahedra and non-bridging oxygens. The findings allow a prediction of DC conductivity for a large variety of lithium aluminosilicate glass compositions. eng
dc.description.sponsorship DFG/FOR/1277
dc.description.sponsorship DFG/FOR/1277
dc.language.iso eng eng
dc.publisher Cambridge : Royal Society of Chemistry
dc.relation.ispartofseries Physical Chemistry Chemical Physics 17 (2015), Nr. 1
dc.rights Es gilt deutsches Urheberrecht. Das Dokument darf zum eigenen Gebrauch kostenfrei genutzt, aber nicht im Internet bereitgestellt oder an Außenstehende weitergegeben werden. Dieser Beitrag ist aufgrund einer (DFG-geförderten) Allianz- bzw. Nationallizenz frei zugänglich.
dc.subject Sodium Aluminosilicate Glasses eng
dc.subject Molecular-Dynamics Simulation eng
dc.subject Ionic-Conductivity eng
dc.subject Silicate-Glasses eng
dc.subject Solid Electrolytes eng
dc.subject Oxide Glasses eng
dc.subject Electrical-Conductivity eng
dc.subject Supercooled Melts eng
dc.subject Tracer Diffusion eng
dc.subject Self-Diffusion eng
dc.subject.ddc 540 | Chemie ger
dc.subject.ddc 530 | Physik ger
dc.title Lithium conductivity in glasses of the Li2O-Al2O3-SiO2 system eng
dc.type Article
dc.type Text
dc.relation.essn 1463-9084
dc.relation.issn 1463-9076
dc.relation.doi http://dx.doi.org/10.1039/c4cp03609c
dc.bibliographicCitation.issue 1
dc.bibliographicCitation.volume 17
dc.bibliographicCitation.firstPage 465
dc.bibliographicCitation.lastPage 474
dc.description.version publishedVersion
tib.accessRights frei zug�nglich


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