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On-chip supercapacitor electrode based on polypyrrole deposited into nanoporous Au scaffold

机译:基于聚吡咯沉积在纳米多孔au支架中的片上超级电容器电极

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摘要

On-chip supercapacitors hold the potential promise for serving as the energy storage units in integrated circuit system, due to their much higher energy density in comparison with conventional dielectric capacitors, high power density and long-term cycling stability. In this study, nanoporous Au (NP-Au) film on-chip was employed as the electrode scaffold to help increase the electrolyte-accessible area for active material. Pseudo-capacitive polypyrrole (PPY) with high theoretical capacitance was deposited into the NP-Au scaffold, to construct the tailored NP-Au/PPY hybrid on-chip electrode with improved areal capacitance. Half cell test in three- electrode system revealed the improved capacitor performance of nanoporous Au supported PPY electrode, compared to the densely packed PPY nanowire film electrode on planer Au substrate (Au/PPY). The areal capacitance of 37 mF/cm2~10 mV/s, 32 mF/cm2~50 mV/s, 28 mF/cm2~100 mV/s, 16 mF/cm2~500 mV/s, were offered by NP-Au/PPY. Also, the cycling performance was enhanced via using NP-Au scaffold. The developed NP-Au/PPY on-chip electrode demonstrated herein paves a feasible pathway to employ dealloying derived porous metal as the scaffold for improving both the energy density and cycling performance for supercapacitor electrodes.
机译:片上超级电容器具有与常规介电电容器相比高得多的能量密度,高功率密度和长期循环稳定性,因此有望成为集成电路系统中的储能单元。在这项研究中,芯片上的纳米多孔金(NP-Au)膜被用作电极支架,以帮助增加活性材料的电解质可及区域。将具有高理论电容的伪电容聚吡咯(PPY)沉积到NP-Au支架中,以构建具有改善的面电容的定制NP-Au / PPY混合片上电极。在三电极系统中的半电池测试表明,与在平面Au衬底上密堆积的PPY纳米线薄膜电极(Au / PPY)相比,纳米多孔Au支撑的PPY电极的电容器性能有所改善。 NP-Au提供的面积电容为37 mF / cm2〜10 mV / s,32 mF / cm2〜50 mV / s,28 mF / cm2〜100 mV / s,16 mF / cm2〜500 mV / s / PPY。此外,通过使用NP-Au支架可以增强骑行性能。本文展示的开发的NP-Au / PPY片上电极为采用脱合金派生的多孔金属作为支架提供了一条可行的途径,以改善超级电容器电极的能量密度和循环性能。

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