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Polymer Derived Si–B–C–N Ceramics: 30 Years of Research

Long term stability of ceramics at high temperatures is one of the great challenges of the contemporary technology developments. Multi‐component ceramics such as Si–B–C–N systems gain a lot of interest for high temperature applications due to the stability of their amorphous inorganic network arisin...

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Bibliographic Details
Published in:Advanced engineering materials 2018-10, Vol.20 (10), p.n/a
Main Authors: Viard, Antoine, Fonblanc, Diane, Lopez‐Ferber, David, Schmidt, Marion, Lale, Abhijeet, Durif, Charlotte, Balestrat, Maxime, Rossignol, Fabrice, Weinmann, Markus, Riedel, Ralf, Bernard, Samuel
Format: Article
Language:English
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Summary:Long term stability of ceramics at high temperatures is one of the great challenges of the contemporary technology developments. Multi‐component ceramics such as Si–B–C–N systems gain a lot of interest for high temperature applications due to the stability of their amorphous inorganic network arising from strong covalent bonding. The polymer derived ceramics (PDC) route enables the synthesis of such materials from preceramic polymers as well as their manufacturing as specific ceramic geometries, which are difficult to obtain otherwise. This review proposes an overview of the works related to the development of Si–B–C–N ceramics through the PDC route in the last 30 years. A particular focus is made on the relation between the chemical structure of the precursors and the properties of the resulting ceramics. The main topics reviewed are related to the synthesis of tailor‐made polymeric precursors, to their processing to ceramic components, and to the characterization of the material properties and functionalities. The various strategies adopted for the development of shaped Si–B–C–N ceramics as functional materials are presented and the trend of nowadays research for future evolution of Si–B–C–N materials is discussed. The authors review the updated development of polymer‐derived Si–B–C–N ceramics since several decades. The authors give detailed insights on the chemistry of molecular and polymeric precursors, the polymer‐to‐ceramic transformation mechanisms, and the microstructural feature of ceramics and the structural evolution of the amorphous Si–B–C–N network at high temperature. The design of complex shapes and porous materials is reported.
ISSN:1438-1656
1527-2648
DOI:10.1002/adem.201800360