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Transparent Ceramics: Scalable and Formable Tellurite‐Based Transparent Ceramics for Near Infrared Applications (Advanced Optical Materials 10/2016)
Author(s) -
Bertrand Anthony,
Carreaud Julie,
Chenu Sébastien,
Allix Mathieu,
Véron Emmanuel,
Duclère JeanRené,
Launay Yann,
Hayakawa Tomokatsu,
Genevois Cécile,
Brisset François,
Célarié Fabrice,
Thomas Philippe,
Delaizir Gaëlle
Publication year - 2016
Publication title -
advanced optical materials
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.89
H-Index - 91
ISSN - 2195-1071
DOI - 10.1002/adom.201670055
Subject(s) - materials science , ceramic , crystallite , refractive index , transparent ceramics , infrared , crystallization , thermal stability , optoelectronics , high refractive index polymer , transmission (telecommunications) , scalability , composite material , optics , chemical engineering , computer science , telecommunications , metallurgy , physics , engineering , database
Transparent tellurite polycrystalline ceramics are demonstrated to be simply elaborated by full and congruent crystallization of the 75TeO 2 ‐12.5Bi 2 O 3 ‐12.5Nb 2 O 5 parent glass, by G. Delaizir and co‐workers on page 1482. The low‐temperature tellurite glass elaboration and its stability both enable the preparation of scalable tailor‐shaped ceramics with high refractive index, transmission in the near infrared range up to 5.5 μm, and promising mechanical/thermal properties.

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