Fluoropolyether-containing polymers
A technology of polymers and fluoropolyethers, which is applied in the field of polymers containing fluoropolyethers, can solve the problems of lack of weather resistance, achieve excellent water/oil repellency, and maintain antifouling effects
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Embodiment 1
[0131] 150 g of tetrahydrofuran and 300 g of 1,3-bistrifluoromethylbenzene were charged into the reactor, and 160 ml of 0.7M allylmagnesium bromide was added dropwise thereto. Next, slowly add 300g (4.8×10- 2 mol) a compound of the following formula (I).
[0132]
[0133] pl:q1=47:53, pl+q1≈43
[0134] The resulting solution was heated at 60 °C for 4 hours. It was then cooled to room temperature and added dropwise to 300 g of 1.2M aqueous hydrochloric acid to terminate the reaction. The lower layer or fluorine compound layer was recovered by separation operation and washed with acetone. The washed lower layer or fluorochemical layer is recovered again. The residual solvent was distilled off in vacuo to obtain 292 g of a fluoropolyether-containing polymer of the following formula (II).
[0135]
[0136] p1:q1=47:53, p1+q1≈43
[0137] use 1 The polymer was analyzed by H-NMR, and the results are shown below.
[0138] 1 H-NMR
[0139] δ2.2(-CO H (CH 2 CH=CH 2 ) ...
Embodiment 2
[0144] 150 g of tetrahydrofuran and 300 g of 1,3-bistrifluoromethylbenzene were charged into the reactor, and 320 ml of 0.7M allylmagnesium bromide was added dropwise thereto. Next, slowly add 300g (9.6×10- 2 mol) a compound of the following formula (III).
[0145]
[0146] pl:qI=47:53, pl+q1≈43
[0147] The resulting solution was heated at 60 °C for 4 hours. It was then cooled to room temperature and added dropwise to 300 g of 1.2M aqueous hydrochloric acid to terminate the reaction. The lower layer or fluorine compound layer was recovered by separation operation and washed with acetone. The washed lower layer or fluorochemical layer is recovered again. The residual solvent was distilled off in vacuo to obtain 286 g of a fluoropolyether-containing polymer of the following formula (IV).
[0148]
[0149] pl:q1=47:53, pl+q1≈43
[0150] use 1 The polymer was analyzed by H-NMR, and the results are shown below.
[0151] 1 H-NMR
[0152] δ2.2(-CO H (CH 2 CH=CH 2 ...
Embodiment 3
[0157] 150 g of tetrahydrofuran and 300 g of 1,3-bistrifluoromethylbenzene were charged into the reactor, and 160 ml of 0.7M allylmagnesium bromide was added dropwise thereto. Next, slowly add 300g (4.8×10 -2 mol) a compound of the following formula (V).
[0158]
[0159] The resulting solution was heated at 60 °C for 4 hours. It was then cooled to room temperature and added dropwise to 300 g of 1.2M aqueous hydrochloric acid to terminate the reaction. The lower layer or fluorine compound layer was recovered by separation operation and washed with acetone. The washed lower layer or fluorochemical layer is recovered again. The residual solvent was distilled off in vacuo to obtain 277 g of a fluoropolyether-containing polymer of the following formula (VI).
[0160]
[0161] use 1 The polymer was analyzed by H-NMR, and the results are shown below.
[0162] 1 H-NMR
[0163] δ2.2(-CO H (CH 2 CH=CH 2 ) 2 )1H
[0164] δ2.3(-COH(C H 2 CH=CH 2 ) 2 )4H
[0165] δ...
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