Applied Organometallic Chemistry · 2001 · 98 citations · 38 references
EngineeringCeramic PowdersC–n CeramicsCeramic MaterialsCeramic TechnologyThermal StabilitySolid‐state ThermolysisMaterials ScienceCrystalline CeramicsCeramicsCeramic MaterialStructural CeramicMicrostructureHigh Temperature MaterialsApplied PhysicsCeramics MaterialsCeramic SynthesisMetal-ceramic SystemsAmorphous Solid
Abstract The preparation of silicon nitride‐ and carbide‐based ceramics by solid‐state thermolysis of polysilazanes and polysilylcarbodiimides is described. Results on the ceramization of the preceramic compounds and the architecture of the corresponding amorphous states obtained by spectroscopic means and by X‐ray and neutron scattering are reviewed. Fundamental correlations between the composition and structure of the preceramic compounds and the architecture of the amorphous state are revealed. Furthermore, the crystallization behavior of the amorphous precursor‐derived Si–C–N ceramics is treated. Moreover, the influence of boron on the thermal stability of the amorphous state is described. The high‐temperature behavior of these Si–B–C–N solids can be correlated with their phase composition. Ceramic materials with compositions located close to the three‐phase equilibrium SiC + BN + C exhibit a high temperature stability up to 2000 °C. This effect is accompanied by the formation of a metastable solid consisting of Si 3 N 4 and SiC nanocrystals that are embedded in a turbostratic B–C–N matrix phase. Based on thermodynamic considerations, a model for the high‐temperature stability effect is proposed. Copyright © 2001 John Wiley & Sons, Ltd.
38
A silicoboron carbonitride ceramic stable to 2,000°C
Ralf Riedel, Andreas Kienzle, Lutz Ruwisch et al. · Nature · 1996 · 722 citations
Precursor‐derived Covalent Ceramics*
Joachim Bill, Fritz Aldinger · Advanced Materials · 1995 · 366 citations
Ceramics from organometallic polymers
Marcell Peuckert, T. Vaahs, Martin Brück · Advanced Materials · 1990 · 226 citations
Engineering, Raw Materials Science, Classical Ceramic Powder +20