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Vertically Oriented MXene Bridging the Frequency Response and Capacity Density Gap for AC-Filtering Pseudocapacitors

机译:垂直取向MXene,用于弥合交流滤波赝电容器的频率响应和容量密度差距

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摘要

Electrochemical capacitors (ECs) with high-rate characteristics demonstrate great promise for replacing bulky aluminum electrolytic capacitors with alternate current (AC)-filtering functions. Currently, the performance of AC-line filtering ECs is limited by the vast gap between the ionic transport kinetics and capacity density of electrode materials. Herein, vertically oriented MXene and reduced graphene oxide composite (VMG) electrodes are prepared by electrochemical co-deposition to bridge the performance gap for AC-line filtering ECs. Benefiting from the unique pseudocapacitive characteristic and vertically interconnected microstructure, the VMG-based EC exhibits an outstanding areal capacitance of 1.14 mF cm(-2) with a phase angle of -80 degrees at 120 Hz. Moreover, by utilizing the advantages of MXene at negative potential, an asymmetric pseudocapacitor is constructed with an energy density up to 805 mu F V-2 cm(-2) at 120 Hz, which can be further incorporated in portable and wearable devices with excellent environmental ripple filtering capability in diverse scenarios.
机译:具有高倍率特性的电化学电容器 (EC) 在替代具有交流 (AC) 滤波功能的笨重铝电解电容器方面具有广阔的前景。目前,交流线路滤波ECs的性能受到电极材料离子传输动力学和容量密度之间巨大差距的限制。本文通过电化学共沉积制备了垂直取向MXene和还原氧化石墨烯复合(VMG)电极,以弥合交流线路滤波EC的性能差距。得益于独特的赝电容特性和垂直互连的微观结构,基于VMG的EC在120 Hz时表现出1.14 mF cm(-2)的出色面电容,相位角为-80度。此外,利用MXene在负电位下的优势,构建了在120 Hz下能量密度高达805 μ F V-2 cm(-2)的非对称赝电容器,该赝电容器可以进一步集成到便携式和可穿戴设备中,在各种场景下具有出色的环境纹波滤波能力。

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