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Structure and dynamics of Oxyde Melts and Glasses : a view from multinuclear and high temperature NMR
Massiot D., Fayon F., Montouillout V., Pellerin N., Hiet J., Roiland C., Florian P., Coutures J.P., Cormier L., Neuville D.R.
Journal of Non-Crystalline Solids 354 (2008) 249-254 - http://hal.archives-ouvertes.fr/hal-00176692
Article in peer-reviewed journal
Chemical Sciences/Material chemistry
Physics/Condensed Matter/Materials Science
Physics/Condensed Matter/Disordered Systems and Neural Networks
Chemical Sciences/Inorganic chemistry
Structure and dynamics of Oxyde Melts and Glasses : a view from multinuclear and high temperature NMR
D. Massiot 1, 2, F. Fayon 1, 2, V. Montouillout 1, 2, N. Pellerin 1, 2, J. Hiet 1, 2, C. Roiland 1, 2, P. Florian 1, 2, J.P. Coutures 3, L. Cormier 4, D.R. Neuville 5
1:  Centre de recherches sur les matériaux à haute température (CRMHT)
http://crmht.cnrs-orleans.fr
CNRS : UPR4212
1D Av de la recherche scientifiq 45071 ORLEANS CEDEX 2
France
2:  Fédération RMN du Solide à Hauts Champs (FRMN-SHC)
http://rmngbp.cnrs-orleans.fr/federation/
CNRS : FR2950 – Université d'Orléans
3E av de la recherche scientifiq 45071 ORLEANS CEDEX 2
France
3:  Institut de science et de génie des Matériaux et Procédés (ISGMP)
http://www.imp.cnrs.fr
CNRS : UPR8521
Rue Professeur Trombe BP 5 66125 FONT ROMEU CEDEX
France
4:  Institut de minéralogie et de physique des milieux condensés (IMPMC)
http://www.impmc.jussieu.fr/
CNRS : UMR7590 – IPG PARIS – Université Pierre et Marie Curie [UPMC] - Paris VI – Université Paris VII - Paris Diderot
Campus Boucicaut 140, rue de Lourmel 75015 - Paris
France
5:  Institut de Physique du Globe de Paris (IPGP)
http://www.ipgp.jussieu.fr/
CNRS : UMR7154 – INSU – IPG PARIS – Université Pierre et Marie Curie [UPMC] - Paris VI – Université Paris VII - Paris Diderot – Université de la Réunion
tour 14-24 - 2ème etg 4 Place Jussieu 75252 PARIS CEDEX 05
France
Solid State Nuclear Magnetic Resonance (NMR) experiments allow characterizing the local structure and dynamics of oxide glasses and melts. Thanks to the development of new experiments, it now becomes possible to evidence not only the details of the coordination state of the network formers of glasses but also to characterize the nature of polyatomic molecular motifs extending over several chemical bonds. We present results involving 31P homonuclear experiments that allow description of groups of up to three phosphate units and 27Al/17O heteronuclear that allows evidencing μ3 oxygen bridges in aluminate glasses and rediscussion of the structure of high temperature melts.
English

Journal of Non-Crystalline Solids
Publisher Elsevier
ISSN 0022-3093 
international
2008
354
249-254

Solid State NMR – Glass – Silicate
http://crmht.cnrs-orleans.fr/Intranet/Publications/?id=2077

ANR RMNHRHC
ANR RMNHRHC
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