Science of Ceramic Chemical Processing
A comprehensive treatment of producing ceramic, glass, and composite materials using chemistry-based processing methods. Synthesizes the most up-to-date research. Includes new areas of computer aided processing, molecular calculations of ceramic processing reactions, and chemical control of surface films. Contributions from over 115 experts in the field. Index.
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A Multinuclear HSi 70 NMR Study of
Inorganic Colloids for Forming Ultrastructures
Relationships Between Sol to Gel to Glass
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acid adsorption aerogels alkoxide alumina anion behavior boehmite bonds C. J. Brinker calculated Ceramics Chem chemical clusters colloidal colloidal particles composite concentration condensation condensation reactions crosslinking crystallization curves D. R. Ulrich DCCA decrease densification density diameter dielectric dispersion drying effect electron energy experimental fibers Figure films flocculation formamide formation fractal function gelation glass grain hydrolysis hydrolyzed increase kcal/mole kinetics L. L. Hench liquid Materials Science metal methanol method MNDO mole molecular molecules monoliths monomer Non-Cryst obtained optical oxide phase Phys polymer polymerization polysilanes pore powder precursor prepared produced properties pyrolysis Raman ratio reaction sample seeding shear rate shown in Fig shows shrinkage silane silanol silica gels silicon silicon nitride sintering SiO2 sol-gel process solid solution solvent species spectra structure substrate surface area suspension temperature TEOS thermal TiO2 transition varistors viscosity