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Constructing Conjugated Microporous Polymers Containing the Pyrene-4,5,9,10-Tetraone Unit for Energy Storage

  • Mohamed Gamal Mohamed*
  • , Swetha V. Chaganti
  • , Santosh U. Sharma
  • , Maha Mohamed Samy
  • , Mohsin Ejaz
  • , Jyh Tsung Lee
  • , Kan Zhang
  • , Shiao Wei Kuo*
  • *Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

65 Scopus citations

Abstract

In this work, we reported the rational design and synthesis of two pyrene-4,5,9,10-tetraone (PT)-linked conjugated microporous polymers (PT-CMPs) as organic electrode precursors in energy storage applications, which were prepared through the Sonogashira polycondensation reaction of ethynyl pyrene (Py-T)/tetraphenylethene (TPE-T) as common units with brominated pyrene tetraene (PT-Br2) as a redox-active unit. We employed microscopic, spectroscopic, and N2adsorption/desorption isotherm analyses to investigate the thermal stability, molecular structure, and porosity properties of both newly obtained PT-CMPs. Thermogravimetric analysis (TGA) revealed that both synthesized PT-CMPs feature moderate thermal stability. TheP-PT-CMP exhibited a high BET surface area of up to 300 m2g-1and a total pore volume was 0.34 cm3g-1, based on N2sorption analyses. Notably, the P-PT-CMP framework displayed a very high capacitance up to 400 F g-1with superior capacitance stability up to 80% over 5000 cycles at 10 A g-1according to the supercapacitor performance. In addition, we have evaluated the electrochemical performance of a symmetric coin supercapacitor, showing great potential for real-life applications in electrical energy storage (EES).

Original languageEnglish
Pages (from-to)10130-10140
Number of pages11
JournalACS Applied Energy Materials
Volume5
Issue number8
DOIs
StatePublished - 22 Aug 2022
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2022 American Chemical Society. All rights reserved.

Keywords

  • Sonogashira reaction
  • conjugated microporous polymers
  • pyrene-4,5,9,10-tetraone
  • supercapacitor
  • tetraphenylethene

ASJC Scopus subject areas

  • Chemical Engineering (miscellaneous)
  • Energy Engineering and Power Technology
  • Electrochemistry
  • Materials Chemistry
  • Electrical and Electronic Engineering

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