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Highly flexible, all solidstate microsupercapacitors from vertically aligned carbon nanotubes

机译:垂直排列的碳纳米管具有高度柔性的全固态微型超级电容器

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摘要

We report a highly flexible planar micro-supercapacitor with interdigitated finger electrodes of vertically aligned carbon nanotubes (VACNTs). The planar electrode structures are patterned on a thin polycarbonate substrate with a facile, maskless laser-assisted dry transfer method. Sputtered Ni is used to reduce the in-plane resistance of the VACNT electrodes. An ionogel, an ionic liquid in a semi-solid matrix, is used as an electrolyte to form a fully solid-state device. We measure a specific capacitance of 430 μF cm~(-2) for a scan rate of 0.1 V s~(-1) and achieve rectangular cyclic voltammograms at high scan rates of up to 100 V s~(-1). Minimal change in capacitance is observed under bending. Mechanical fatigue tests with more than 1000 cycles confirm the high flexibility and durability of the novel material combination chosen for this device. Our results indicate that this scalable and facile fabrication technique shows promise for application in integrated energy storage for all solid-state flexible microdevices.
机译:我们报告了一种高度柔性的平面微型超级电容器,具有垂直排列的碳纳米管(VACNTs)的指状指状电极。平面电极结构通过一种便捷的,无掩模的激光辅助干转移方法在薄聚碳酸酯基板上构图。溅射镍用于降低VACNT电极的面内电阻。离子凝胶(半固体基质中的离子液体)用作电解质以形成全固态器件。我们以0.1 V s〜(-1)的扫描速率测量了430μFcm〜(-2)的比电容,并在高达100 V s〜(-1)的高扫描速率下获得了矩形循环伏安图。在弯曲下观察到电容的最小变化。超过1000次循环的机械疲劳测试证实了为该设备选择的新型材料组合的高柔韧性和耐用性。我们的结果表明,这种可扩展且简便的制造技术显示出有望用于所有固态柔性微器件的集成储能中。

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