MoS2 Nanoflakes based Kilohertz Electrochemical Capacitors

Author:

Bal Sourayan1,Baranwal Rishav1,Lin Xueyan1,Li Wenyue2,Yang Shize3,Islam Nazifah4,Fan Zhaoyang2ORCID

Affiliation:

1. School for Engineering of Matter Transport & Energy Arizona State University Tempe Arizona 85281 USA

2. School of Electrical Computer and Energy Engineering Arizona State University Tempe AZ 85281 USA

3. ACEM Core Yale University 810 West Campus Drive West Haven CT 06516 USA

4. Edward E. Whitacre Jr. College of Engineering Texas Tech University Lubbock TX 79409 USA

Abstract

AbstractAn ultra‐fast electrochemical capacitor (EC) designed for efficient ripple current smoothing was fabricated using vertically oriented MoS2 (VOM) nanoflakes deposited on freestanding carbonized cellulose (CC) sheets as electrodes. The daily used cellulose tissue sheets were transformed into electrode scaffolds through a rapid pyrolysis process within a preheated furnace, on which VOM nanoflakes were formed in a conventional hydrothermal process. With these ~10 μm thick VOM‐CC electrodes, ultrafast ECs with tunable frequency response and specific capacitance density were fabricated. The ECs with a cell‐level areal capacitance density of 0.8 mF/cm2 at 120 Hz were demonstrated for ripple current filtering from 60 Hz to 60 kHz. At a lower frequency response level, EC cell with a large capacitance density of 4.8 mF/cm2 was also demonstrated. With the facile and easily scaled up process to producing the nanostructured electrode, the miniaturized VOM‐CC based ECs have the potential to substitute the bulky aluminum electrolytic capacitors for current smoothing and pulse power applications.

Funder

National Science Foundation

Publisher

Wiley

Subject

Electrochemistry,Electrical and Electronic Engineering,Energy Engineering and Power Technology

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