Ionic conductive polymer diaphragm for lithium-sulphur battery, and preparation method and application thereof
An ionic polymer and ion-conducting technology, applied in the direction of lithium batteries, battery pack components, non-aqueous electrolyte batteries, etc., can solve the problems of poor mechanical properties, poor flexibility, high price, etc., and achieve low lattice energy and fast conduction , reducing the attenuation effect
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[0031] The preparation method of the ion-conducting polymer diaphragm of the present invention comprises the following steps:
[0032] Step (1): dissolving the ion-conducting polymer in a solvent to form an ion-conducting polymer solution with a certain mass fraction.
[0033] Step (2): Put the battery diaphragm into the ion-conducting polymer solution, take it out after 10 minutes, absorb the excess solution, and dry it in an oven at high temperature for 12-24 hours to obtain the ion-conducting polymer diaphragm.
[0034] The solvent in step (1) includes one or more mixtures of N-methylpyrrolidone, dimethyl sulfoxide, N,N-dimethylformamide, and N,N-dimethylacetamide.
[0035]The mass fraction described in step 1 is 1-30%.
[0036] The high temperature in step 2 is 50-100°C.
[0037] The ion-conductive polymer diaphragm prepared by the above method is mainly composed of a battery diaphragm and an ion-conductive polymer layer attached to the surface of the battery diaphragm. ...
Embodiment 1
[0054] In this example, the main chain is polyether ether ketone, and the side chain is a fluorine-containing sulfonimide-based ionomer. The structural formula is as follows:
[0055]
[0056] The preparation method of the ion-conducting polymer diaphragm is as follows:
[0057] Take 1 g of the ionic polymer (SPEEK-PFSI-Li) and add it to 24 g of N-methylpyrrolidone, stir for 5 hours, and make a SPEEK-PFSI-Li solution with a mass ratio of 4%; immerse the PP diaphragm in the solution for 10 minutes Finally, take it out, absorb the excess solution with filter paper, put the diaphragm into a horizontal tetrafluoroethylene petri dish, and put it into a drying oven at 60° C. to dry for 20 hours to obtain the required ion-conductive polymer diaphragm.
[0058] figure 1 It is the impedance diagram before and after polarization of the prepared ion-conducting polymer membrane through the "non-blocking" type electrode test at room temperature. Through calculation, it can be conclude...
Embodiment 2
[0060] In this example, the structure of the side chain is the same as that of Example 1, except that the main chain adopts a polysulfone structure, and the preparation process is basically the same.
[0061] Take 1 g of the ionic polymer (PSU-PFSI-Li) and add it to 24 g of N-methylpyrrolidone, stir for 5 hours to form a 4% PSU-PFSI-Li solution; immerse the PP diaphragm in the solution for 10 minutes Finally, take it out, absorb the excess solution with filter paper, put the diaphragm into a horizontal tetrafluoroethylene petri dish, and put it into a drying oven at 60° C. to dry for 20 hours to obtain the required ion-conductive polymer diaphragm.
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