Preparation method of electrical stimulation-near infrared dual response high strength hydrogel
A dual-response, hydrogel technology, applied in the field of functional materials, can solve the problems of poor stimuli-response sensitivity, single stimuli-response mode, and restrictions on the application of hydrogels, and achieve favorable adsorption, good stimuli-response sensitivity, and good mechanical properties. performance effect
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Embodiment 1
[0018] A, the preparation of hydrogel:
[0019] Dissolve N-isopropylacrylamide (NIPAM) with a concentration range of 0.226 g and soluble chitosan with a concentration range of 0.1 g in 2 ml of deionized water, and stir thoroughly. Then, 2 mg of the cross-linking agent N,N-methylenebisacrylamide (Bis) and 10 μl of TMEDA were sequentially added to the mixed solution. Nitrogen was blown into the solution to remove oxygen in the solution, and then 10 mg of ammonium persulfate (APS) was quickly added, and polymerized at room temperature for 10 h to obtain a hydrogel with a semi-interpenetrating network structure.
[0020] B. Adsorption of oxidants:
[0021] Soak the hydrogel prepared in step A for 10 hours in 5 ml ferric chloride solution with a concentration of 0.06 g / ml to obtain a hydrogel adsorbed with an oxidant.
[0022] C. Adsorption and oxidation of pyrrole monomer:
[0023] Soak the hydrogel that has absorbed the oxidizing agent in step B in 4ml of pyrrole solution with...
Embodiment 2
[0025] A, the preparation of hydrogel:
[0026] Dissolve 300ml of N,N-dimethylaminoethyl methacrylate (DMAEMA) and 0.1g of sodium alginate in 2ml of deionized water and stir well. Then, 2 mg of cross-linking agent N,N-methylenebisacrylamide (Bis) and 10 μl of TMEDA were sequentially added to the mixed solution. Nitrogen was blown into the solution to remove the oxygen in the solution, and then 20 mg of ammonium persulfate (APS) and 10 mg of sodium sulfite were quickly added, and polymerized at room temperature for 10 h to obtain a hydrogel with a semi-interpenetrating network structure.
[0027] B. Adsorption of oxidants:
[0028] Soak the hydrogel prepared in step A in 5ml of potassium persulfate solution with a concentration of 0.06g / ml for 10h to obtain a hydrogel with adsorbed oxidant.
[0029] C. Adsorption of pyrrole and oxidation of pyrrole:
[0030] Soak the hydrogel with the oxidant adsorbed in step B in 4ml of pyrrole solution with a mass fraction of 1%, and place...
Embodiment 3
[0032] The operation of this example is basically the same as that of Example 1, except that the natural macromolecular monomer used in Example 1 is replaced by sodium alginate.
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