Method of preparing hexamethyldisilane amine sodium solution
A technology of sodium hexamethyldisilazide and hexamethyldisilazine, which is applied in the field of preparation of sodium hexamethyldisilazide tetrahydrofuran solution, and can solve the problems of low reaction yield and long reaction time
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Embodiment 1
[0016] In a 500ml three-necked flask, add 100g (0.62mol) of hexamethyldisilazane amine, add 20g (0.5mol) of 60% (w / w) sodium hydride under stirring, heat in an oil bath at 110-115°C for 3 hours, cool Zone to below 50°C, add 120g of anhydrous tetrahydrofuran to dissolve, and let stand to precipitate. Take the supernatant to test the content, and the solution contains 89.5 g (0.49 mol) of sodium hexamethyldisilazide. The yield is 98% based on sodium hydride.
Embodiment 2
[0018] In a 1000ml three-necked flask, add 300g of anhydrous toluene, add 322.8g (2.0mol) of hexamethyldisilazane under stirring, add 82.0g (2.05mol) of 60% (w / w) sodium hydride, heat to reflux, reflux The temperature was 110-115°C, and the reaction was kept under reflux for 4 hours. Cool to 40-50°C, add 300 g of dry tetrahydrofuran, and stir until dissolved. Let the precipitation stand, and take the supernatant to test the content. The solution contains 356 g (1.96 mol) of sodium hexamethylsilylamine. The yield based on sodium hydride is 95.6%.
Embodiment 3
[0020] In a 1000ml three-neck flask, add 300g of anhydrous toluene, add 322.8g (2.0mol) of hexamethyldisilazane under stirring, add 90.0g (2.25mol) of 60% (w / w) sodium hydride, heat to reflux, reflux The temperature was 110-115°C, and the reaction was kept under reflux for 4 hours. Cool to 40-50°C, add 300 g of dry tetrahydrofuran, and stir until dissolved. Let the precipitation stand, and take the supernatant to test the concentration. The solution contains 361 g (1.97 mol) of sodium hexamethylsilylamine. The reaction yield is 87.5% based on sodium hydride.
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