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    • 1. 发明申请
    • METHODS FOR PRODUCING TEXTURED ELECTRODE BASED ENERGY STORAGE DEVICE
    • 用于生产基于纹理电极的能量储存装置的方法
    • WO2013169862A3
    • 2014-01-03
    • PCT/US2013040083
    • 2013-05-08
    • NANOSCALE COMPONENTS INCUNIV MAINE SYS BOARD TRUSTEES
    • GRANT ROBERT WACHARIGE ASELA MAHABRUCE MITCHELL R M
    • H01M4/1399
    • H01M4/0452C25B3/10H01M4/0466H01M4/134H01M4/1395H01M4/1399H01M4/463H01M4/608H01M4/624H01M4/661H01M4/663H01M4/667H01M10/052
    • This method enables the use of nanowire or nano-textured forms of Polyaniline and other conductive polymers in energy storage components. The delicate nature of these very high surface area materials are preserved during the continuous electrochemical synthesis, drying, solvent application and physical assembly. The invention also relates to a negative electrode that is comprised of etched, lithiated aluminum that is safer and lighter weight than conventional carbon based lithium-ion negative electrodes. The invention provides for improved methods for making negative and positive electrodes and for energy storage devices containing them. The invention provides sufficient stability in organic solvent and electrolyte solutions, where the prior art processes commonly fail. The invention further provides stability during repetitive charge and discharge. The invention also provides for novel microstructure protecting support membranes to be used in an energy storage device.
    • 该方法能够在能量存储组件中使用纳米线或纳米纹理形式的聚苯胺和其它导电聚合物。 在连续电化学合成,干燥,溶剂应用和物理组装过程中,这些非常高的表面积材料的微妙性质得以保留。 本发明还涉及一种负极,其由蚀刻的锂化铝组成,其比常规碳基锂离子负极更安全和更轻。 本发明提供了用于制造负极和正极以及包含它们的储能装置的改进方法。 本发明在有机溶剂和电解质溶液中提供足够的稳定性,其中现有技术的方法通常失效。 本发明进一步提供重复充电和放电期间的稳定性。 本发明还提供了用于能量存储装置中的用于新颖的微结构保护支撑膜。