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Multifunctional nanocomposite structural separators for energy storage

机译:多功能纳米复合材料结构分隔符的能量储存

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Separators in energy storage devices such as batteries and supercapacitors are critical elements between the much-researched anodes and cathodes. Here we present a new "structural separator" comprised of electrically-insulating aligned alumina nanotubes, which realizes a structural, or mechanically robust, function in addition to allowing charge transfer. The polymer nanocomposite structural separator is demonstrated in a supercapacitor cell and also as an interface reinforcement in an aerospace-grade structural carbon fiber composite. Relative to a polymeric commercial separator, the structural separator shows advantages both electrically and structurally: ionic conductivity in the supercapacitor cell is doubled due to the nanotubes disrupting the semi-crystallinity in the polymer electrolyte, and the structural separator creates an interface that is 50% stronger in the advanced composite. In addition to providing direct benefits to existing energy storage devices, the structural separator is best suited to multifunctional structural energy storage applications.
机译:分隔符在能源存储设备等电池和超级电容器是至关重要的much-researched阳极和元素阴极。分隔符”electrically-insulating组成的实现一个一致的氧化铝纳米管结构或机械强劲,功能除了允许电荷转移。纳米复合材料结构分隔符在超级电容器单元,也是一个接口aerospace-grade强化结构碳纤维复合材料。聚合物商业分离器结构电和分隔符显示的优势结构:离子电导率由于超级电容器单元翻了一番纳米管的semi-crystallinity中断聚合物电解质和结构性的分隔符创建一个接口,为50%更强的先进复合材料。现有的能源提供直接的好处存储设备,结构分离器是最好的适合多功能结构的能量存储应用程序。

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