The structure and properties of ...
Document type :
Article dans une revue scientifique: Article original
Permalink :
Title :
The structure and properties of xZnO–(67-x)SnO–P2O5 glasses: (I) optical and thermal properties, Raman and infrared spectroscopies
Author(s) :
Saitoh, Akira [Auteur]
Ehime University [Matsuyama, Japon]
Brow, Richard K. [Auteur]
Missouri University of Science and Technology [Missouri S&T]
Hoppe, Uwe [Auteur]
Universität Rostock
Tricot, Grégory [Auteur]
Laboratoire Avancé de Spectroscopie pour les Intéractions la Réactivité et l'Environnement (LASIRE) - UMR 8516
Anan, Shoji [Auteur]
Ehime University [Matsuyama, Japon]
Takebe, Hiromichi [Auteur]
Ehime University [Matsuyama, Japon]
Ehime University [Matsuyama, Japon]
Brow, Richard K. [Auteur]
Missouri University of Science and Technology [Missouri S&T]
Hoppe, Uwe [Auteur]
Universität Rostock
Tricot, Grégory [Auteur]
Laboratoire Avancé de Spectroscopie pour les Intéractions la Réactivité et l'Environnement (LASIRE) - UMR 8516
Anan, Shoji [Auteur]
Ehime University [Matsuyama, Japon]
Takebe, Hiromichi [Auteur]
Ehime University [Matsuyama, Japon]
Journal title :
Journal of Non-Crystalline Solids
Volume number :
484
Pages :
132-138
Publication date :
2018-03
HAL domain(s) :
Chimie/Chimie théorique et/ou physique
English abstract : [en]
Glasses with nominal molar compositions xZnO–(67-x)SnO–33P2O5 were prepared and their thermal and optical properties are reported. Density, glass transition temperature, thermal expansion coefficient, viscosity, and ...
Show more >Glasses with nominal molar compositions xZnO–(67-x)SnO–33P2O5 were prepared and their thermal and optical properties are reported. Density, glass transition temperature, thermal expansion coefficient, viscosity, and refractive index change systematically when ZnO replaces SnO. Raman and infrared spectroscopies provide information about the phosphate anions that constitute the glass network. The compositional trends in glass properties are explained considering the linkages between Sn- and Zn-polyhedra and these different phosphate anions. Property trends fall into three compositional ranges defined by low ZnO concentration (0 ≤ x ≤ 20, region I), intermediate ZnO concentration (20 < x ≤ 40, II), and large ZnO concentrations (40 < x ≤ 50, III).Show less >
Show more >Glasses with nominal molar compositions xZnO–(67-x)SnO–33P2O5 were prepared and their thermal and optical properties are reported. Density, glass transition temperature, thermal expansion coefficient, viscosity, and refractive index change systematically when ZnO replaces SnO. Raman and infrared spectroscopies provide information about the phosphate anions that constitute the glass network. The compositional trends in glass properties are explained considering the linkages between Sn- and Zn-polyhedra and these different phosphate anions. Property trends fall into three compositional ranges defined by low ZnO concentration (0 ≤ x ≤ 20, region I), intermediate ZnO concentration (20 < x ≤ 40, II), and large ZnO concentrations (40 < x ≤ 50, III).Show less >
Language :
Anglais
Audience :
Internationale
Popular science :
Non
Administrative institution(s) :
CNRS
ENSCL
Université de Lille
ENSCL
Université de Lille
Collections :
Research team(s) :
Propriétés magnéto structurales des matériaux (PMSM)
Submission date :
2021-11-16T08:23:26Z
2024-02-21T07:32:25Z
2024-02-21T07:32:25Z