Preparation method of ion imprinted polymer film
A polymer film, ion imprinting technology, applied in separation methods, chemical instruments and methods, membrane technology and other directions, can solve problems such as unsuccessful technical solutions, and achieve the effects of convenient control, high stability and mild preparation conditions
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Embodiment approach 1
[0037] (1) 0.3423g pyrrole monomer is dissolved in the aqueous solution of 200ml and is mixed with the pyrrole aqueous solution A of 0.025mol / L;
[0038] (2) 3.7462g potassium chloride is dissolved in the aqueous solution of 100ml and is mixed with the potassium chloride aqueous solution B of 0.5mol / L;
[0039] (3) 4.8627g concentrated hydrochloric acid is dissolved in the aqueous solution of 100ml and is mixed with the hydrochloric acid solution C of 0.5mol / L;
[0040] (4) 0.6064g nickel chloride is dissolved in the aqueous solution of 100ml and is mixed with the nickel chloride solution D of 0.025mol / L;
[0041] (5) 0.8273g potassium ferricyanide is dissolved in the aqueous solution of 100ml and is mixed with the potassium ferricyanide solution E of 0.025mol / L;
[0042] (6) Take 10ml of solution A, solution B, solution C, solution D and solution E respectively and put them into the reaction vessel and stir evenly;
[0043] (7) Using a three-electrode system (the working el...
Embodiment approach 2
[0048] (1) 0.3423g pyrrole monomer is dissolved in the aqueous solution of 200ml and is mixed with the pyrrole aqueous solution A of 0.025mol / L;
[0049] (2) 3.7462g potassium chloride is dissolved in the aqueous solution of 100ml and is mixed with the potassium chloride aqueous solution B of 0.5mol / L;
[0050] (3) 4.8627g concentrated hydrochloric acid is dissolved in the aqueous solution of 100ml and is mixed with the hydrochloric acid solution C of 0.5mol / L;
[0051] (4) 0.6064g nickel chloride is dissolved in the aqueous solution of 100ml and is mixed with the nickel chloride solution D of 0.025mol / L;
[0052] (5) 0.8273g potassium ferricyanide is dissolved in the aqueous solution of 100ml and is mixed with the potassium ferricyanide solution E of 0.025mol / L;
[0053] (6) Take 10ml of solution A, solution B, solution C, solution D and solution E respectively and put them into the reaction vessel and stir evenly;
[0054] (7) Three-electrode system is adopted: the working...
Embodiment approach 3
[0058] (1) 0.3423g pyrrole monomer is dissolved in the aqueous solution of 200ml and is mixed with the pyrrole aqueous solution A of 0.025mol / L;
[0059] (2) 5.055g potassium nitrate is dissolved in the aqueous solution of 100ml and is mixed with the potassium nitrate aqueous solution B of 0.5mol / L;
[0060] (3) 4.8469g concentrated nitric acid is dissolved in the aqueous solution C of 100ml and is mixed with the nitric acid solution C of 0.5mol / L;
[0061] (4) 0.9576g yttrium nitrate is dissolved in the aqueous solution D of 100ml and is mixed with 0.025mol / L yttrium nitrate solution D;
[0062] (5) 0.8273g potassium ferricyanide is dissolved in the aqueous solution of 100ml and is mixed with the potassium ferricyanide solution E of 0.025mol / L;
[0063] (6) Take 10ml of solution A, solution B, solution C, solution D and solution E respectively and put them into the reaction vessel and stir evenly;
[0064] (7) A three-electrode system is adopted (the working electrode has a...
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