Heptatridecafluorooctylpropyl polyhedral oligomeric silsesquioxane and functionalized derivates thereof
A technology of heptapolytridecafluorooctylpropyl cage and fluorooctylpropyl cage, which is applied in the field of preparation of T7 configuration tridecafluorooctylpropyl cage silsesquioxane and its functionalized derivatives , can solve the problems of high regularity long-chain functionalized T8 configuration fluorine-containing POSS, etc.
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Embodiment 1
[0056] The technical solution of the present invention will be described in detail below by means of examples, but the protection scope of the present invention is not limited to the examples.
Embodiment 1 7
[0057] Example 1 Preparation of heptapolytridecafluorooctylpropyl cage silsesquioxane
[0058] 52.4g of tridecafluorooctylpropyltrimethoxysilane (trade name: Actyflon-G602, molecular formula: CF 3 (CF 2 ) 5 CH 2 CH(CH 3 )CH 2 CH 2 CH 2 Si(OCH 3 ) 3 Add 0.1mol of 500mL tetrahydrofuran, then add 2g of NaOH and 3g of deionized water, stir evenly, and heat to 75°C for reflux reaction for 20h;
[0059] Rotate the solution to remove the solvent and volatile substances to obtain a large amount of viscous substance, then wash with methanol (the temperature of methanol is controlled at -10 ~ 0°C), spin dry, and dry to obtain heptatridecafluorooctylpropyl Silsesquioxane trisilanol sodium salt; its molecular formula: (CF 3 (CF 2 ) 5 CH 2 CH(CH 3 )CH 2 CH 2 CH 2 ) 7 Si 7 o 12 Na 3
[0060] Its chemical structural formula is:
[0061]
[0062] R is CH 2 CH 2 CH 2 (CH 3 )CHCH 2 (CF 3 ) 5 CF 3 , which is POSS with the cutaway T7 configuration.
[0063] The ...
Embodiment 2~6 7
[0065] Example 2-6 Preparation of Heptapolytridecafluorooctylpropyl Cage Silsesquioxane
[0066] Concrete steps are with embodiment 1, preparation process parameter, used raw material and concrete consumption table 1:
[0067] Preparation process parameters, raw materials used and specific consumption in table 1 embodiment 2~6
[0068]
[0069] In this step, potassium hydroxide can be used as the base catalyst to replace tetramethylammonium hydroxide, and base-catalyzed incomplete hydrolysis can also be realized.
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Abstract
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