In-situ heat cross bonding process for preparing fluorine containing gel state electrolyte material and process for making polymeric lithium ion cell
An electrolyte material, lithium-ion battery technology, applied in secondary batteries, circuits, electrical components, etc., can solve the problems of leakage, corrosion and combustion, poor electrolyte capacity, electrolyte leakage, etc., to avoid leakage, The effect of low internal resistance and simple preparation method
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example 1
[0041]Example 1 In-situ thermal crosslinking method prepares fluorine-containing gel state electrolyte material and the manufacture method 1 of polymer lithium ion battery
[0042] Trifluoroethyl methacrylate (H 2 C=C(CH 3 )CO 2 CH 2 CF 3 ): 10Wt%;
[0043] Ethylene glycol dimethacrylate (H 2 C=C(CH 3 )CO 2 (CH 2 CH 2 O) 1 OCC (CH 3 )=CH 2 ): 3Wt%;
[0044] Dibenzoyl peroxide ((C 6 h 5 CO 2 ) 2 , BPO): 0.25Wt%;
[0045] Electrolyte, 1M liPF 6 , EC / DEC / VC=1 / 1 / 0.1 (W / W / W): 86.75Wt%.
[0046] In a dry environment (relative humidity lower than 2%) and room temperature, the mixed solution is prepared according to the above weight percentage. The mixed solution should be transparent and have good fluidity. Use the vacuum injection method to inject the mixed solution into the battery body containing the battery core (the battery core contains positive electrode strips, negative electrode strips, separators and positive and negative tabs) to make the positive elect...
example 2
[0047] Example 2 In-situ thermal cross-linking method to prepare fluorine-containing gel state electrolyte material and the manufacture method 2 of polymer lithium ion battery
[0048] Tetrafluoropropyl methacrylate (H 2 C=C(CH 3 )CO 2 CH 2 CF 2 CHF 2 ): 8Wt%;
[0049] Triethylene glycol dimethacrylate (CH 2 =C(CH 3 )CO 2 (CH 2 CH 2 O) 3 OCC (CH 3 )=CH 2 ): 3Wt%;
[0050] Azobisisobutyronitrile ((CH 3 (CH 3 )C(CN)N) 2 , AIBN): 0.3Wt%;
[0051] Electrolyte, 1M liPF 6 , EC / DEC=1 / 1 (W / W): 88.7Wt%.
[0052] In a dry environment (relative humidity lower than 2%) and room temperature, the mixed solution is prepared according to the above weight percentage. The mixed solution should be transparent and have good fluidity. Use the vacuum injection method to inject the mixed solution into the battery body containing the battery core (the battery core contains positive electrode strips, negative electrode strips, separators and positive and negative tabs) to make the ...
example 3
[0053] Example 3 In-situ thermal crosslinking method prepares fluorine-containing gel state electrolyte material and the manufacturing method 3 of polymer lithium ion battery
[0054] Pentafluoropropyl methacrylate (H 2 C=C(CH 3 )CO 2 CH 2 CF 2 CF 3 ): 10wt%;
[0055] Ethoxylated trimethylolpropane triacrylate (7 / 3 EO / OH TMPTA): 2.25Wt%;
[0056] Bis(4-tert-butylcyclohexyl)peroxydicarbonate (((CH 3 ) 3 CC 6 h 10 OCO 2 ) 2 ): 0.25Wt%;
[0057] Electrolyte, 1M liPF 6 , EC / DEC / DMC=1 / 1 / 1 (W / W / W): 87.5Wt%.
[0058] In a dry environment (relative humidity lower than 2%) and room temperature, the mixed solution is prepared according to the above weight percentage. The mixed solution should be transparent and have good fluidity. Use the vacuum injection method to inject the mixed solution into the battery body containing the battery core (the battery core contains positive electrode strips, negative electrode strips, separators and positive and negative tabs) to make th...
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