Self-antibacterial lactic acid-based waterborne polyurethane as well as preparation method and emulsion thereof
A water-based polyurethane and lactic acid-based technology, which is applied in the field of functional polymer materials, can solve problems such as unclear hydrophilicity, low antibacterial effect, and unfavorable environment, and achieve the effects of simple synthesis process, good stability, and reduced drug resistance
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Embodiment 1
[0048] Preparation of self-antibacterial lactic acid-based aqueous polyurethane emulsion Chitosan-lactone-BT-PU
[0049] Step 1, the preparation of Chitosan-lactone
[0050] Weigh 17.52g chitosan and dissolve in DCM solvent containing 0.5% acetic acid, add 51.34g lactose after dissolving and clarification, stir at room temperature for 6h, then add 6.59gNaBH 3 CN continued to react for 48h. After the reaction, the solid was filtered out, washed with MeOH and dried to obtain water-soluble chitosan Chitosan-lactone. Concrete synthetic route is as follows:
[0051]
[0052] Step 2, preparation of BT-PU
[0053] Weigh 20.88g of lactic acid-based polyol (hydroxyl value: 53.72mgKOH / g) in a reaction flask, heat to 100°C for vacuum dehydration for 45min, then cool down to 70°C, add 0.014g of stannous octoate, and slowly add dropwise, 11.99 g diphenylmethane diisocyanate, after the dropwise addition, react at this temperature for 2 hours until the theoretical NCO is reached, then ...
Embodiment 2
[0056] Embodiment 2 from the preparation of antibacterial lactic acid-based aqueous polyurethane emulsion Chitosan-maltose-BT-PU
[0057] Step 1, the preparation of Chitosan-maltose
[0058] Weigh 17.52g chitosan and dissolve in THF solvent containing 0.5% acetic acid, add 51.34g maltose after dissolving and clarification, stir at room temperature for 6h, then add 3.97gNaBH 4 The reaction was continued for 48 hours. After the reaction was completed, the solid was filtered out, washed with MeOH and dried to finally obtain water-soluble chitosan Chitosan-maltose. Concrete synthetic route is as follows:
[0059]
[0060] Step 2, preparation of BT-PU
[0061] Weigh 20.46g of lactic acid-based polyol (hydroxyl value: 54.83mgKOH / g) in a reaction flask, heat to 100°C for vacuum dehydration for 45min, then cool down to 70°C, add 0.014g of dibutyltin dilaurate, and slowly drop , 8.06g of hexamethylene diisocyanate, after the dropwise addition, react at this temperature for 2h to ...
Embodiment 3
[0065] Embodiment 3 from the preparation of antibacterial lactic acid-based aqueous polyurethane emulsion Chitosan-D-ribose-BT-PU
[0066] Step 1, the preparation of Chitosan-D-ribose
[0067] Weigh 17.52g chitosan and dissolve in the MeCN solvent containing 0.5% acetic acid, add 22.51g D-ribose after dissolving and clarification, stir at room temperature for 6h, then add 22.22gNaB(OAc) 3 H continued to react for 48 hours. After the reaction, the solid was filtered out, washed with MeOH and dried to obtain water-soluble chitosan Chitosan-D-ribose. Concrete synthetic route is as follows:
[0068]
[0069] Step 2, preparation of BT-PU
[0070] Weigh 19.90g of lactic acid-based polyol (hydroxyl value: 56.38mgKOH / g) in a reaction flask, heat to 100°C for vacuum dehydration for 45min, then cool down to 70°C, add 0.014g of dibutyltin di(dodecylsulfide) , and slowly added dropwise, 10.65g isophorone diisocyanate, reacted at this temperature for 2h to reach the theoretical NCO a...
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