Quickly UV (ultraviolet) curable and water soluble chitosan derivative and synthesis method thereof
A technology of chitosan derivatives and synthesis methods, applied in the field of biopolymer materials and their synthesis, can solve problems such as long UV irradiation time, and achieve the effect of short irradiation time
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specific Embodiment approach 1
[0018] Specific embodiment one: a kind of fast UV curable and water-soluble chitosan derivative of the present embodiment is N-methacryloyl chitosan, and its structural formula is:
[0019]
[0020] Wherein, m is the molar percentage of chitosan participating in the acylation reaction, and n is the molar percentage of chitosan not participating in the acylation reaction.
specific Embodiment approach 2
[0021] Specific embodiment two: a kind of fast UV curing of the present embodiment and the synthetic method of the water-soluble chitosan derivative are to carry out according to the following steps:
[0022] 1. Dissolve 1g of chitosan in acetic acid solution, prepare a chitosan acetic acid solution with a mass volume concentration of 0.4% to 2.8% at room temperature, and slowly add 0.3 to 3.5g of chitosan to the prepared chitosan acetic acid solution. Methacrylic anhydride, control the reaction temperature at 20-65°C, react for 3-24 hours, and obtain a mixed solution;
[0023] 2. Use ammonia solution with a molar concentration of 0.46-0.95mol / L or NaHCO with a molar concentration of 0.45-0.83mol / L 3 The pH value of the mixed solution obtained in the aqueous solution adjustment step 1 is 6.3-8.2, dialyze the adjusted mixed solution in a deionized water environment at a temperature of 30-55°C for 3-7 days, and replace it every 12-24 hours Deionized water, after dialysis, the s...
specific Embodiment approach 3
[0028] Specific embodiment three: the difference between this embodiment and specific embodiment two is: in step one, the chitosan acetic acid solution with a mass volume concentration of 1.0% is prepared. Others are the same as in the second embodiment.
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