A kind of preparation method of epoxy silane oligomer
A technology of epoxy silane and oligomers, which is applied in the field of preparation of epoxy silane oligomers, can solve problems affecting product content, processing environmental pollution, and product color darkening, and achieves unabated activity, high purity, and low volatile effect
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Embodiment 1
[0023] Add 472 g of 3-(2,3-epoxypropoxy)propyltrimethoxysilane and 47 g of tert-butanol into a 1000ml four-necked flask equipped with mechanical stirring, a thermometer, a spherical condenser, and a constant pressure funnel, And start to stir and heat up. Dissolve 0.054 g of sodium chloride in 27 g of distilled water with an analytical balance, transfer to a constant pressure funnel and wait for dropwise addition. When the temperature of the solution in the flask was raised to 40°C, the sodium chloride solution was added dropwise, and the dropping speed was kept as uniform as possible, and the dropwise addition was completed within 2 h. During the dripping process, the solution in the flask will heat up due to the hydrolysis reaction, and appropriate cooling measures should be taken to keep the reaction temperature between 40-45°C. After the dropwise addition, continue to keep the temperature for aging reaction for 1 h. Then distill at normal pressure first, gradually raise ...
Embodiment 2
[0025] Add 472 g of 3-(2,3-epoxypropoxy)propyltrimethoxysilane and 47 g of tert-butanol into a 1000ml four-necked flask equipped with mechanical stirring, a thermometer, a spherical condenser, and a constant pressure funnel, And start to stir and heat up. Weigh 0.054 g of sodium carbonate dissolved in 27 g of distilled water with an analytical balance, transfer to a constant pressure funnel and wait for dropwise addition. When the temperature of the solution in the flask was raised to 40°C, the sodium chloride solution was added dropwise, and the dropping speed was kept as uniform as possible, and the dropwise addition was completed within 2 h. During the dripping process, the solution in the flask will heat up due to the hydrolysis reaction, and appropriate cooling measures should be taken to keep the reaction temperature between 40-45°C. After the dropwise addition, continue to keep the temperature for aging reaction for 1 h. Then the temperature was raised to 95° C., and ...
Embodiment 3
[0026] Embodiment 3 does not use tert-butanol as solvent and compares with embodiment 1
[0027] Add 472 g of 3-(2,3-glycidoxy)propyltrimethoxysilane into a 1000ml four-neck flask equipped with a mechanical stirrer, a thermometer, a spherical condenser, and a constant pressure funnel, and start to stir and heat up. Dissolve 0.054 g of sodium chloride in 27 g of distilled water with an analytical balance, transfer to a constant pressure funnel and wait for dropwise addition. When the temperature of the solution in the flask was raised to 40°C, the sodium chloride solution was added dropwise, and the dropping speed was kept as uniform as possible, and the dropwise addition was completed within 2 h. During the dripping process, the solution in the flask will heat up due to the hydrolysis reaction, and appropriate cooling measures should be taken to keep the reaction temperature between 45-50°C. After the dropwise addition, continue to keep the temperature for aging reaction for ...
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