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A Glass Platelet Coating on Battery Electrodes and Its Use as a Separator for Lithium-Ion Batteries

机译:电池电极上的玻璃血小板涂层及其用作锂离子电池的隔膜

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摘要

A new type of separator for lithium-ion batteries (LIBs) has been developed using ultrathin micrometer-sized sodium borosilicate glass platelets coated directly on a battery electrode with a water-based binder. The coating process is described in detail, demonstrating coating thicknesses of the glass separator of less than 50 μm. The high-temperature stability has been investigated and it has been shown that the separator is dimensionally stable to at least 600 °C. With regard to the electrochemical performance, full-cell tests on graphite || lithium iron phosphate cells showed a very good behavior, according to which comparable properties of the electrode/separator compound to a commercial polymer-based separator were achieved. This glass separator/electrode composite shows an interesting property profile and is a temperature-stable alternative to conventional polymer-based separators.
机译:使用直接涂覆在具有水基粘合剂的电池电极上的超薄微米尺寸的硼硅酸钠玻璃血小板开发了一种用于锂离子电池(LIBS)的新型分离器。 详细描述了涂布过程,说明了玻璃分离器的涂层厚度小于50μm。 已经研究了高温稳定性,并且已经证明分离器尺寸稳定至至少600℃。 关于电化学性能,石墨上的全细胞试验|| 磷酸铁锂细胞显示出非常良好的行为,根据哪种相当的电极/隔膜化合物与商业聚合物基分离器的性质。 该玻璃隔膜/电极复合材料显示有趣的性质谱,是常规聚合物基分离器的温度稳定的替代方案。

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