Silane Coupling Agents
📄 Viewing lite version
Full site ›
Book Details
Author(s)E.P. Plueddemann
PublisherSpringer
ISBN / ASIN0306434733
ISBN-139780306434730
AvailabilityUsually ships in 24 hours
Sales Rank370,488
CategoryScience
MarketplaceUnited States 🇺🇸
Description ▲
* Much progress has been made in the last 8 years in understanding the theory and practice of silane coupling agents. A major advance in this direction was the measurement of true equilibrium constants for the hydroly sis and formation of siloxane bonds. Equilibrium constants for bond reten tion are so favorable that a silane coupling agent on silica has a thousandfold advantage for bond retention in the presence of water over an alkoxysilane bond formed from hydroxy-functional polymers and silica. In practice, the bonds of certain epoxies to silane-primed glass resist debonding by water about a thousand times as long as the epoxy bond to unprimed glass. Oxane bonds of silane coupling agents to metal oxides seem to follow the same mechanism of equilibrium hydrolysis and rebonding, although equilibrium constants have not been measured for individual metal-oxygen silicon bonds. This suggests, however, that methods of improving bond retention to glass will also improve the water resistance of bonds to metals. of standard coupling agents with a hydrophobic silane or one Modification with extra siloxane cross-linking have improved the water resistance of bonds to glass and metals another hundredfold over that obtained with single coupling agents.
More Books in Science
Low and High Dielectric Constant Materials and Their A…
View
From Biology to Sociopolitics: Conceptual Continuity i…
View
Reviews of Plasma Chemistry: Volume 2
View
Application of Short-Term Bioassays in the Fractionati…
View
The Molecular Immunology of Complex Carbohydrates - 2 …
View
Structure, Function and Biogenesis of Energy Transfer …
View
The Interacting Boson Model (Cambridge Monographs on M…
View
Heavy Quark Physics (Cambridge Monographs on Particle …
View
An Introduction to Theoretical Chemistry
View