Synthesis and structural characterization of stoichiometric Li-Ga-Ge Sulfo-selenide glasses
Homogeneous glasses in the mixed-chalcogen pseudo-ternary system Li2S-Ga2Se3-GeSe2 are synthesized and their structure is characterized using Raman and one– and two-dimensional 6Li, 77Se, and 71Ga nuclear magnetic resonance (NMR) spectroscopy. The structure of these glasses can be described as a cha...
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Veröffentlicht in: | Journal of non-crystalline solids 2017-02, Vol.457, p.44-51 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | Homogeneous glasses in the mixed-chalcogen pseudo-ternary system Li2S-Ga2Se3-GeSe2 are synthesized and their structure is characterized using Raman and one– and two-dimensional 6Li, 77Se, and 71Ga nuclear magnetic resonance (NMR) spectroscopy. The structure of these glasses can be described as a charge-compensated network predominantly consisting of corner sharing (Ga/Ge) (Se,S)4/2 tetrahedra. The compositional evolution of the atomic structure is heavily influenced by the Li2S:Ga2Se3 ratio R where charge compensation is accommodated by the formation of different structural units and preferential chemical ordering for S atoms. Glasses with R1 are characterized by the formation of non-bridging Se (NBSe) and S (NBS) sites. The Se atoms show a preference over S for these non-bridging sites and form Ge-NBSe linkages, while the S atoms preferentially bond to Ga, resulting in the formation of GaS4/2 tetrahedra. This structural scenario is shown to be consistent with the corresponding changes in the glass transition temperature.
•Composition range for glass formation in the mixed-chalcogen pseudo-ternary system Li2S-Ga2Se3-GeSe2 is mapped•Glass structure is characterized using Raman and one and two -dimensional multinuclear NMR spectroscopy•Addition of Li modified the network of corner and edge -sharing (Ge,Ga)Se4 tetrahedra•Li:Ga ratio plays an important role in structural evolution•Ga shows preference for bonding with S in heavily modified Li-rich glasses |
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ISSN: | 0022-3093 1873-4812 |
DOI: | 10.1016/j.jnoncrysol.2016.11.021 |