首页> 外文期刊>ACS Sustainable Chemistry & Engineering >High-Performance Fiber-Shaped Flexible Asymmetric Microsupercapacitor Based on Ni(OH)(2) Nanoparticles-Decorated Porous Dendritic Ni-Cu Film/Cu Wire and Reduced Graphene Oxide/Carbon Fiber Electrodes
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High-Performance Fiber-Shaped Flexible Asymmetric Microsupercapacitor Based on Ni(OH)(2) Nanoparticles-Decorated Porous Dendritic Ni-Cu Film/Cu Wire and Reduced Graphene Oxide/Carbon Fiber Electrodes

机译:基于Ni(OH)(2)纳米颗粒装饰多孔树枝状镍胶质Ni-Cu薄膜/ Cu丝和氧化铟烯氧化物/碳纤维电极的高性能纤维形柔性非对称微矿物电路。

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摘要

Miniaturization of electronic devices with portable, flexible and wearable characteristics created a great demand for high-performance microscale energy storage devices with lightweight and flexible properties. Among the energy storage devices, wire-shaped supercapacitors (WSSCs) have recently received tremendous attention due to their tiny volume, wearability, high flexibility and potential applications in the next-generation portable/wearable electronic devices. Herein, we successfully fabricated a porous dendritic Ni-Cu film on Cu wire substrate (CWE) for fabrication of high-performance wire-type supercapacitors. The porous structure with dendritic morphology provides a high surface area, short ion diffusion pathway and low contact resistance between electroactive materials and metal wire electrode. The Ni(OH)(2) electroactive material is then deposited on Ni-Cu/CWE. The fabricated Ni(OH)(2)/Ni-Cu/CWE exhibits excellent electrochemical performances with high areal (volumetric and length) specific capacitance of 12.2 F cm(-2) (1220.89 F cm(-3), 1.53 F cm(-1)), respectively at a current density of 4 mA cm(-2), and an excellent cycle stability (100% even after 3500 cycles). A novel fiber-shaped flexible asymmetric micro-supercapacitor (ASC) based on Ni(OH)(2)/Ni-Cu/CW as positive electrode and reduced graphene oxide/carbon fiber (RGO/CF) as the binder free negative electrode was assembled. This device can be operated reversibly in the voltage range of 0-1.6 V and exhibited a maximum areal and volumetric energy (E-A = 195 mu Wh cm(-2), E-V = 15.04 mWh cm(-3)) and power (P-A = 7643 mu W cm(-2), P-V = 588 mW cm(-3)) densities. In addition, the ASC device also exhibits an excellent cycling stability with 95.7% capacitance retention after 5000 cycles and good mechanical stability, which is checked by bending of the whole device at various angles. These promising results indicated the great potential of our fabricated device for portable, flexible and wearable applications.
机译:具有便携式,柔性和可穿戴特性的电子设备的小型化为具有轻质和灵活的性能的高性能微观能量存储装置产生了极大的需求。在能量存储装置中,由于其微小的体积,耐磨性,高柔韧性和潜在的应用,丝形超级电容器(WSSCS)最近受到了下一代便携式/可穿戴电子设备中的微小体积,耐磨性,高柔韧性和潜在应用。在此,我们在Cu线衬底(CWE)上成功地制造了一种多孔树枝状镍铜膜,用于制造高性能线型超级电容器。具有树突形态的多孔结构提供高表面积,短离子扩散途径和电活性物质和金属线电极之间的低接触电阻。然后将Ni(OH)(2)电活性材料沉积在Ni-Cu / CWW上。制造的Ni(OH)(2)/ Ni-Cu / CWWe表现出优异的电化学性能,具有12.2f cm(-2)(1220.89 f cm(-3),1.53 f cm( -1)),分别以4 mA cm(-2)的电流密度,并且均匀的循环稳定性(即使在3500次循环后100%)。基于Ni(OH)(2)/ Ni-Cu / Cw的新型纤维形柔性不对称微型微型涂物(ASC)作为正极和还原的石墨烯/碳纤维(RGO / CF)作为粘合剂游离负极是组装。该装置可以在0-1.6 V的电压范围内可逆地操作,并显示出最大的区域和体积能量(EA =195μm(-2),EV = 15.04 MWh CM(-3))和功率(PA = 7643 mu w cm(-2),pv = 588 mw cm(-3))密度。另外,ASC器件还具有优异的循环稳定性,在5000个循环之后具有95.7%的电容保持率和良好的机械稳定性,通过以各个角度弯曲整个装置来检查。这些有希望的结果表明了我们生产的便携式,柔性和可穿戴应用程序的巨大潜力。

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