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Method for manufacturing lithium battery with ultra-high energy density

机译:用超高能量密度制造锂电池的方法

摘要

(A) preparing a plurality of conductive porous layers, a wet anode layer, and a wet cathode layer; (B) stacking a desired number of porous layers and wet anode layers in an alternating manner to form an anode electrode having a thickness of 100 μm or more; (C) placing the porous separator layer in contact with the anode electrode; (D) stacking a desired number of porous layers and wet cathode layers in an alternating manner to form a cathode electrode in contact with the porous separator, wherein the cathode electrode has a thickness of 100 μm or more; And (F) assembling and sealing an anode electrode, a separator and a cathode electrode in a housing, comprising the step of manufacturing a lithium battery, a method for manufacturing a lithium battery is disclosed. The integrated anode or cathode layer is preferably thicker than 300 μm, more preferably thicker than 400 μm, even more preferably thicker than 500 μm.
机译:(a)制备多个导电多孔层,湿阳极层和湿阴极层; (b)以交替的方式堆叠所需数量的多孔层和湿阳极层以形成厚度为100μm或更大的阳极电极; (c)将多孔隔板层与阳极电极接触; (d)以交替的方式堆叠所需数量的多孔层和湿阴极层,以形成与多孔隔膜接触的阴极电极,其中阴极电极的厚度为100μm以上; (f)组装和密封阳极电极,隔膜和阴极电极,包括制造锂电池的步骤,公开了一种制造锂电池的方法。 集成的阳极或阴极层优选厚于300μm,更优选厚于400μm,甚至更优选厚于500μm。

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