2006 AIChE Annual Meeting
(608d) The Early-Time Polymerization Kinetics in Acidic Water/Alcohol Solutions of Bis(Trialkoxysilyl)Alkanes with Short Bridging Chains
Quantitative modeling of these silanes is performed and their kinetic trends are compared with their counterpart tri-functional silanes, methyltriethoxysilane and methyltrimethoxysilane. The precursors are reacted with acidic water in the presence of parent alcohol and the transients are monitored in situ using 29Si NMR. These experimental data are used to fit a kinetic model of hydrolytic polycondensation which accounts for first-shell substitution effects, and both intra- and inter- molecular cyclization. Reaction conditions are chosen so that (a) solutions remain homogeneous through out the data collection time, (b) total integrated intensities of the peaks in the NMR spectra remain constant with time, and (c) reactions are slow enough to facilitate the unambiguous assignment of the NMR peaks. Meeting these requirements is complicated by surprisingly strong chemical shift coupling between the ends of the monomers and by microphase separation of the products. Kinetic features of bridged and non-bridged silanes are compared especially the importance of (Si-O-)n rings vs. (-O-Si-O-Cx ) rings.