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The Synthesis of NiCo2O4–MnO2 Core–Shell Nanowires by Electrodeposition and Its Supercapacitive Properties

机译:电沉积与超级特性合成NicO 2 O 4-MnO2核壳纳米线及其超级特性

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摘要

Hierarchical composite films grown on current collectors are popularly reported to be directly used as electrodes for supercapacitors. Highly dense and conductive NiCo2O4 nanowires are ideal backbones to support guest materials. In this work, low crystalline MnO2 nanoflakes are electrodeposited onto the surface of NiCo2O4 nanowire films pre-coated on nickel foam. Each building block in the composite films is a NiCo2O4–MnO2 core–shell nanowire on conductive nickel foam. Due to the co-presence of MnO2 and NiCo2O4, the MnO2@NiCo2O4@Ni electrode exhibits higher specific capacitance and larger working voltage than the NiCo2O4@Ni electrode. It can have a high specific capacitance of 1186 F·g−1 at 1 A·g−1. When the core–shell NiCo2O4–MnO2 composite and activated carbon are assembled as a hybrid capacitor, it has the highest energy density of 29.6 Wh·kg−1 at a power density of 425 W·kg−1 with an operating voltage of 1.7 V. This work shows readers an easy method to synthesize composite films for energy storage.
机译:在集电器上生长的分层复合薄膜普遍报告称为超级电容器的电极。高度密集和导电的Nico2O4纳米线是支持客人材料的理想骨干。在这项工作中,低结晶MnO2纳米薄片被电沉积到镍泡沫上预涂覆的NicO 2 O 4纳米线膜的表面上。复合膜中的每个构件块是导电镍泡沫上的NicO 2 O 4-MnO2核壳纳米线。由于MnO2和NicO2O4的共同存在,MnO2 @ Nico2O4 @ Ni电极表现出比Nico2O4 @ Ni电极更高的比电容和较大的工作电压。它可以具有1186 f·g-1的高比电容,1a·g-1。当核 - 壳NicO 2 O 4-MnO2复合材料和活性炭作为混合电容器时,其具有29.6WH-1的最高能量密度,功率密度为425W·kg-1,工作电压为1.7V 。这项工作显示了读者一种简单的方法来合成用于储能的复合膜。

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