Preparation method of oleophobic hydrophobic/hydrophilic functional self-conversion cellulose coating material
A coating material and cellulose technology, which is applied in the field of preparation of oleophobic/hydrophobic/hydrophilic functional self-converting cellulose coating materials, can solve the problems of environmental pollution and low product yield
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Embodiment 1
[0018] A method for preparing an oleophobic / hydrophobic / hydrophilic functional self-converting cellulose coating material, comprising the following steps:
[0019] (1) In terms of weight fraction, add 1 part of cellulose raw material to 20 parts of 1-butyl-3 alkane imidazolium chloride salt ionic liquid at 100 °C for complete dissolution, add 8 parts of trityl chloride and 9 parts of pyrimidine catalyst, Under the condition of Ar atmosphere, the temperature was raised to 80°C and kept for 8h for C 6 The upper trityl substitution reaction, cooled to room temperature, inject the reaction mixture into the methanol solution, and repeatedly wash and filter with methanol, and vacuum dry to obtain the reaction product 1; this step mainly utilizes the C on the cellulose molecular chain 2 ,C 3 and C 6 Differences in ‐OH reactivity.
[0020] (2) Sodium methyl chloroacetate (ClCH 2 COONa) was added to the DMSO solution of the reaction product 1, stirred and reacted at 80°C for 30h, a...
Embodiment 2
[0027] A method for preparing an oleophobic / hydrophobic / hydrophilic functional self-converting cellulose coating material, comprising the following steps:
[0028] (1) In parts by weight, 1 part of cellulose raw material was added to 20 parts of 1‐allyl‐3 alkane imidazolium chloride salt ionic liquid at 100 ° C for complete dissolution, and then 8 parts of trityl chloride and 9 parts The pyrimidine catalyst was added to the above reaction mixture, the temperature was raised to 85°C and kept for 8h for C 6 The upper trityl substitution reaction (under Ar atmosphere conditions), followed by cooling to room temperature; the reaction mixture was poured into methanol solution, and washed with methanol repeatedly and filtered, and finally vacuum-dried to obtain the desired reaction product one.
[0029] (2) Add a relative concentration of 7% sodium methyl chloroacetate (ClCH 2 COONa) was added to the reaction product one / DMSO solution, stirred and reacted at 80°C for 54h, after the r...
Embodiment 3
[0035] A method for preparing an oleophobic / hydrophobic / hydrophilic functional self-converting cellulose coating material, comprising the following steps:
[0036] (1) Using C on the cellulose molecular chain 2 ,C 3 and C 6 Difference in ‐OH reactivity: Add 1 part of cellulose raw material to 20 parts of room temperature biphosphite alkyl imidazole compound ionic liquid at 60 °C for complete dissolution, then add 9 parts of trityl chloride and 9 parts of pyrimidine catalyst to In the above reaction mixture, the temperature was raised to 90°C and kept for 8h for C 6 The upper trityl substitution reaction (under Ar atmosphere conditions), followed by cooling to room temperature; the reaction mixture was poured into methanol solution, and washed with methanol repeatedly and filtered, and finally vacuum-dried to obtain the desired reaction product one.
[0037] (2) Add a relative concentration of 8% sodium methyl chloroacetate (ClCH 2 COONa) was added to the reaction product o...
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