Method for preparing fluorine-containing polydimethylsiloxane anti-icing material
A polydimethylsiloxane, anti-icing technology, applied in the field of preparation of new polymer materials, can solve the problems of over-viscosity of the solution, processing, high melting point of highly fluorinated polymers, etc.
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Embodiment 1
[0016] The preparation method of the anti-icing F-PDMS-co-PMMA polymer material of this embodiment comprises the following steps:
[0017] 1. Add the ratio of AIBN:MMA:F-PDMS=1:100:1 into 50ml round-bottomed flasks respectively, then add tetrahydrofuran to dissolve, slowly raise the temperature to 70°C in an oil bath, react for 8h, and then dissolve the obtained product naturally Cool down. The product was precipitated while stirring in n-hexane solution, and then the filter residue was collected by suction filtration; the crude product was dissolved in refined tetrahydrofuran, and precipitated and washed for 3-5 times; finally, the obtained F-PDMS-co-PMMA solid was placed in Dry in a vacuum oven for 24 hours to collect the F-PDMS-co-PMMA product.
[0018] 2. Prepare 3wt% F-PDMS-co-PMMA solution, dissolve 0.3g of F-PDMS-co-PMMA in 9.7g of chloroform, and drop-coat the prepared F-PDMS-co-PMMA solution on a clean glass slide , naturally formed a film at room temperature for 12...
Embodiment 2
[0021] The preparation method of the anti-icing F-PDMS-co-PMMA polymer material in this example is the same as that of Example 1, only the first step is different:
[0022] 1. Add the ratio of AIBN:MMA:F-PDMS=1:200:1 into 50ml round bottom flask respectively, then add tetrahydrofuran to dissolve, slowly raise the temperature to 70°C in an oil bath, react for 8h, and then dissolve the obtained product naturally Cool down. The product was precipitated while stirring in n-hexane solution, and then the filter residue was collected by suction filtration; the crude product was dissolved in refined tetrahydrofuran, and precipitated and washed for 3-5 times; finally, the obtained F-PDMS-co-PMMA solid was placed in Dry in a vacuum oven for 24 hours to collect the F-PDMS-co-PMMA product.
[0023] The obtained membrane material has a mean square roughness (Ra=0.511) of less than 1 nm and successfully constructs an ultra-smooth surface. Compared with the static contact angle CA=100.4° o...
Embodiment 3
[0025] The preparation method of the anti-icing F-PDMS-co-PMMA polymer material in this example is the same as that of Example 1, only the first step is different:
[0026] 1. Add the ratio of AIBN:MMA:F-PDMS=1:300:1 into 50ml round bottom flask respectively, then add tetrahydrofuran to dissolve, slowly raise the temperature to 70°C in an oil bath, react for 8h, and then dissolve the obtained product naturally Cool down. The product was precipitated while stirring in n-hexane solution, and then the filter residue was collected by suction filtration; the crude product was dissolved in refined tetrahydrofuran, and precipitated and washed for 3-5 times; finally, the obtained F-PDMS-co-PMMA solid was placed in Dry in a vacuum oven for 24 hours to collect the F-PDMS-co-PMMA product.
[0027] The obtained membrane material has a mean square roughness (Ra=0.377) of less than 1 nm and successfully constructs an ultra-smooth surface. Compared with the static contact angle CA=100.4° o...
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