Sonstiges, Englisch, 240 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g
Sonstiges, Englisch, 240 Seiten, Format (B × H): 125 mm x 142 mm, Gewicht: 200 g
ISBN: 978-3-03859-685-1
Verlag: Trans Tech Publications
Sol-gel technology is an important route for the fabrication of inorganic and inorganic-organic composite materials. As is typical of chemical synthesis routes, a wide range of parameters can be used to tailor the product.
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Sol-Gel Production of Silica MicroparticlesSynthesis of Zircon-Based Ceramic Pigments via Sol-Gel MethodsSol-Gel Ceramic PigmentsCharacterization of Oxide Layers Deposited by Sol-GelMechanical Precision in Sol-Gel Manufacturing of 3-D ComponentsOn the Thermal and Photochemical Stabilities of Photochromic Spirooxazine Dyes Encapsulated in Ormocer Matrices Derived by Sol-Gel ProcessingSol-Gel Coatings on Large Glass Substrates for Multilayer Interference SystemsA SiO2-ZrO2 Gel Film Doped with Organic Pigments Made by the Sol-Gel Method for Contrast Enhancement of Color Picture TubesSol-Gel-Derived Coatings on Steel SheetsPreparation of High Sinterable Ba(Mg1/3Ta2/3)O3 Powders by Hydrolysis of Metal AlkoxidesDevelopment of HUD Combiner for Automotive Windshield ApplicationOptical Disk Substrate Fabricated by the Sol-Gel MethodPreparation of Lithium Chloroboracite from AlkoxidesLocal Repairing of Lining Glass Layer by the Alumina Powder Composite Sol-Gel MethodFlat Ceramic Ultrafiltration Membranes and Modules Coated by the Sol-Gel TechniqueEmerging Applications of Sol-Gel TechnologySol-Gel Optical Fiber PreformsProduction of Dispersible Aluminas and Their Use in Different ApplicationsSol-Gel Applications for MembranesDevelopment of Wet Chemical Processing in Nippon Sheet GlassCommercial Development of Sol-Gel Technology in AustraliaNovel Corrosion Resistant Hard-Coatings for Metal SurfacesCharacterization of Aluminium Phosphate GelAdvanced Manufacturing Process for ZnO Surge Arrester DisksPreparation and Properties of Poly(Vinyl Acetate)/Silica-Gel Hybrids Obtained by Sol-Gel Process: Effect of Methyl Groups in Silicon Alkoxide