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Structural integration of tellurium oxide into mixed-network-former glasses: connectivity distribution in the system NaPO(3)-TeO(2).
Authors:Matthias T Rinke  Long Zhang  Hellmut Eckert
Affiliation:1. Institut für Physikalische Chemie, Westf?lische Wilhelms‐Universit?t Münster, Corrensstrasse 30, 48149 Münster, Germany, Fax: (+49) 251?832?9159;2. Shanghai Institute of Optics and Fine Mechanics, Chinese Academy of Sciences, P.O.Box 800‐211, Shanghai 201800, China
Abstract:Sodium phosphate tellurite glasses in the system (NaPO(3))(x)(TeO(2))(1-) (x) were prepared and structurally characterized by thermal analysis, vibrational spectroscopy, X-ray photoelectron spectroscopy (XPS) and a variety of complementary solid-state nuclear magnetic resonance (NMR) techniques. Unlike the situation in other mixed-network-former glasses, the interaction between the two network formers tellurium oxide and phosphorus oxide produces no new structural units, and no sharing of the network modifier Na(2)O takes place. The glass structure can be regarded as a network of interlinked metaphosphate-type P(2) tetrahedral and TeO(4/2) antiprismatic units. The combined interpretation of the O 1s XPS data and the (31)P solid-state NMR spectra presents clear quantitative evidence for a nonstatistical connectivity distribution. Rather, the formation of homoatomic P--O--P and Te--O--Te linkages is favored over mixed P--O--Te connectivities. As a consequence of this chemical segregation effect, the spatial sodium distribution is not random, as also indicated by a detailed analysis of (31)P/(23)Na rotational echo double-resonance (REDOR) experiments.
Keywords:glasses  NMR spectroscopy  structure elucidation  tellurium  vibrational spectroscopy
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