4.5 Article

Electrochemical Sensitization of Activated Carbon by Microporous MOF for Supercapacitor Applications

期刊

CHEMELECTROCHEM
卷 9, 期 2, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/celc.202101425

关键词

Activated carbon surface modification; Aqueous supercapacitor; MOF porogens; Stable MOFs; UiO-66 Supercapacitor

资金

  1. Zewail City of Science and Technology [ZC001-2019]
  2. Science and Technology Development Fund [STDF USC17-43]

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The study reports the surface modification of activated carbon to enhance its charge retention capacitance. The microporous MOF increases the active surface area of the activated carbon, optimizes the solid-electrolyte interface, and improves the capacitive performance of the activated carbon.
The remarkable performance of activated carbon as active electrode material in supercapacitors enabled its large-scale industrialization. Herein, the utilization of facile physical mixing process of microporous, chemically robust, Zr-based metal-organic framework for surface-modification of activated carbon to enhance its charge retention capacitance is reported. In this approach, the high surface area of the microporous MOF increases the active surface area of the activated carbon, providing an extra layer with facilitated electrolyte diffusion properties that effectively modulates the solid-electrolyte interface. A critical optimal coverage of 5wt % by the MOF crystallites is identified, resulting in increased specific capacitance of the activated carbon by similar to 80 %, as compared to the pristine carbon. At higher MOF coverage, the poor electronic conductivity of the MOF hindered the inter-grain charge mobilization within the activated carbon, thus adversely affecting the overall capacitive performance.

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