Preparation method of non-combustible solid polymer electrolyte and secondary lithium battery containing the solid polymer electrolyte
A solid polymer, secondary lithium battery technology, applied in the field of lithium ion batteries, can solve problems such as easy leakage of liquids, and achieve the effects of solving fire and explosion, improving safety performance, and improving flame retardant and safety performance.
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Embodiment 1
[0035] In a glove box filled with argon, put LiPF 6 , LiTFSI is dissolved in the double-ended epoxy polymethylphosphonic acid (propylene glycol) ester monomer, and the mixture is evenly mixed by magnetic stirring for 4 hours; the mixed solution is injected into Li / / SL, SL / / SL (SL is stainless steel pole piece) Between the positive and negative plates of the battery, they were polymerized at 80°C for 4 hours, and then the electrochemical stability window and ionic conductivity of the non-flammable solid polymer electrolyte were tested.
[0036] Among them, two-terminal epoxy polymethylphosphonic acid (propylene glycol) ester and LiPF 6 , The mass ratio of LiTFSI is 100:4:40, and the raw material ratio is shown in Table 1. The prepared polymer for lithium ion batteries has a room temperature ion conductivity of 1.3×10 -4 S / cm, the electrochemical window is 4.0V.
[0037] Table 1
[0038]
Embodiment 2
[0040] In a glove box filled with argon, put LiPF 6 , LiTFSI is dissolved in the double-ended epoxy polymethylphosphonic acid (diethylene glycol) ester monomer, and after adding lithium lanthanum zirconium oxide nanoparticles, the mixture is uniformly mixed by magnetic stirring for 4 hours; the mixed solution is injected into Li / / Between the positive and negative plates of the battery of SL and SL / / SL (SL is stainless steel pole piece), polymerize at 60℃ for 8 hours, and then test the ionic conductivity and electrochemical stability window of the non-flammable solid polymer electrolyte. . Among them, two-terminal epoxy polymethylphosphonic acid (diethylene glycol) ester and LiPF 6 The mass ratio of LiTFSI and lithium lanthanum zirconium oxygen is 100:2:35:7, and the raw material ratio is shown in Table 2. The room temperature ion conductivity of the prepared polymer for lithium ion batteries is 2.6×10 -4 S / cm, the electrochemical window is 4.0V.
[0041] Table 2
[0042]
[0043]...
Embodiment 3
[0045] In a glove box filled with argon, put LiPF 6 , LiTFSI and double-ended epoxy polymethylphosphonic acid (propylene glycol) ester and single-ended epoxy polymethylphosphonic acid (propylene glycol) ester mixed monomers, add aluminum oxide nanoparticles and magnetically stir for 4h to mix well ;Pour the mixed solution between the positive and negative plates of Li / / SL, SL / / SL (SL is stainless steel pole piece), and then polymerize at 80℃ for 4 hours, and then test the non-flammable solid polymer. The ionic conductivity of the electrolyte and the electrochemical stability window.
[0046] Among them, double-ended epoxy polymethylphosphonic acid (propylene glycol) ester and single-ended epoxy polymethylphosphonic acid (propylene glycol) ester, LiPF 6 The mass ratio of LiTFSI and aluminum oxide is 80:20:5:32:7, and the raw material ratio is shown in Table 3. The prepared polymer for lithium ion battery has a room temperature ion conductivity of 2.4×10 -4 S / cm, the electrochemical...
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