Lithium ion secondary battery and solid electrolyte therefor
一种固体电解质、二次电池的技术,应用在有固体电解质的电池、二次电池、二次电池制造等方向,能够解决难以实现高输出电池、紧密接触难以实现、界面电阻增加等问题,达到易于加工处理、减少距离、提高耐热温度的效果
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Embodiment 1
[0086] (Preparation of lithium-ion conductive glass-ceramics)
[0087] Weigh raw material H 3 PO 4 , Al(PO 3 ) 3 , Li 2 CO 3 , SiO 2 and TiO 2 And mix well to make 35.0%P 2 o 5 , 7.5% Al 2 o 3 , 15.0% Li 2 O, 38.0%TiO 2 and 4.5% SiO 2 The composition of the oxide is expressed in mole percent on an oxide basis. The mixture was put into a platinum pot, heated and melted in an electric furnace at 1500° C. for 3 hours while stirring the molten glass. The molten glass is then poured into running water to produce glass flakes. The glass was heated at 950° C. for 12 hours to crystallize, whereby the target glass-ceramic was obtained. By powder X-ray diffraction, it was confirmed that the main crystal phase was Li 1+x+y Al x Ti 2-x Si y P 3-y o 12 (0≤x≤0.4, 0<y≤0.6). The resulting glass-ceramic flakes were pulverized by a jet mill and a glass-ceramic powder having an average particle diameter of 5 micrometers and a maximum particle diameter of 20 micrometers was...
Embodiment 2
[0103] (preparation of solid electrolytes containing many glass-ceramics)
[0104] The glass-ceramic powder obtained in Example 1 and LiBF loaded as a lithium salt 4 The copolymer of polyethylene oxide and polypropylene oxide is uniformly mixed in the ratio of 80:20 in the case of using a mixed solvent of NMP (N-methyl-2-pyrrolidone) and THF (tetrahydrofuran), and passed through a roller The coater coated the mixture on a PET film that had been subjected to mold release treatment and dried it, and then dried it at 120° C. under reduced pressure, and removed the solvent by evaporation to obtain a solid electrolyte sheet having a thickness of 30 μm. Another PET film which had been subjected to a release treatment was adhered to the solid electrolyte thus obtained. The composite electrolyte was then heated at 150 °C and squeezed through a roller press to remove the air bubbles retained in the solid electrolyte. Then, the PET film on both sides of the solid electrolyte was peele...
Embodiment 3
[0124] (preparation of solid electrolyte)
[0125]Weigh raw material H 3 PO 4 , Al(PO 3 ) 3 , Li 2 CO 3 , SiO 2 、TiO 2 and GeO 2 And mix well to make 37.0%P 2 o 5 , 8% Al 2 o 3 , 15.0% Li 2 O, 20.0%TiO 2 , 4% SiO 2 and 16% GeO 2 The composition of , based on oxides, is expressed in mol%. The mixture was placed in a platinum pot, heated and melted in an electric furnace at 1400°C for 3 hours while stirring the molten glass. Molten glass is poured into stainless steel molds to produce glass sheets. The glass was heated at 900° C. in an electric furnace, whereby a target glass-ceramic plate was obtained. By powder X-ray diffraction, it was confirmed that the main crystal phase was Li 1+x+y al x Ti 2-x Si y P 3-y o 12 (wherein 0≤x≤0.4, 0<y≤0.6), wherein part of Ti is replaced by Ge.
[0126] This glass-ceramic was cut into Φ20 mm, and both surfaces thereof were polished to obtain a disk-shaped glass-ceramic (solid electrolyte) having a thickness of 120 µm. ...
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Abstract
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