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Construction of a binder-free PANI-CQD-Cu electrode via an electrochemical method for flexible supercapacitor applications.
Shanmugasundaram, Esakkimuthu; Ganesan, Vigneshkumar; Narayanan, Vimalasruthi; Vellaisamy, Kannan; Saleh, Na'il; Thambusamy, Stalin.
Afiliação
  • Shanmugasundaram E; Department of Industrial Chemistry, Alagappa University Karaikudi 630 003 Tamil Nadu India stalin.t@alagappauniversity.ac.in drstalin76@gmail.com.
  • Ganesan V; Department of Industrial Chemistry, Alagappa University Karaikudi 630 003 Tamil Nadu India stalin.t@alagappauniversity.ac.in drstalin76@gmail.com.
  • Narayanan V; Department of Industrial Chemistry, Alagappa University Karaikudi 630 003 Tamil Nadu India stalin.t@alagappauniversity.ac.in drstalin76@gmail.com.
  • Vellaisamy K; Department of Industrial Chemistry, Alagappa University Karaikudi 630 003 Tamil Nadu India stalin.t@alagappauniversity.ac.in drstalin76@gmail.com.
  • Saleh N; Department of Chemistry, College of Science, United Arab Emirates University P. O. Box 15551 Al Ain United Arab Emirates n.saleh@uaeu.ac.ae.
  • Thambusamy S; Department of Industrial Chemistry, Alagappa University Karaikudi 630 003 Tamil Nadu India stalin.t@alagappauniversity.ac.in drstalin76@gmail.com.
Nanoscale Adv ; 6(6): 1765-1780, 2024 Mar 12.
Article em En | MEDLINE | ID: mdl-38482030
ABSTRACT
In recent years, flexible hybrid supercapacitors (FSCs) have played a significant role in energy storage applications owing to their superior flexibility and electrochemical properties. In this study, carbon quantum dots (CQDs) were prepared from ascorbic acid via a hydrothermal method and physical and chemical characterizations were performed. Then, the carbon quantum dots (CQDs) were doped with polyaniline (PANI) and copper (Cu) to form a PANI-CQD-Cu composite coated on carbon cloth (CC) using an electropolymerization method. In the polymerization process, CQDs bind with the PANI chain and form a PANI-CQD-Cu composite. The prepared electrode's functional group and surface morphology were characterized through XRD, Raman, BET, XPS and SEM with EDAX studies. The electrochemical properties of the PANI-CQD-Cu electrode were investigated using cyclic voltammetry, impedance spectroscopy and galvanostatic charge-discharge study. The capacitance value of PANI-CQD-Cu was 1070 mF cm-2 at 5 mA cm-2 (1070 F g-1 at 1 A g-1), which was higher than that of PANI (775 mF cm-2). Moreover, a flexible asymmetric supercapacitor (FASC) based on an activated carbon/PVA-H2SO4/PANI-CQD-Cu device was fabricated, which exhibited outstanding energy and power densities of 23.10 µW h cm-2 and 0.978 mW cm-2, respectively. The capacitance value remained at 92% after 3000 cycles. The outcome results indicated that the PANI-CQD-Cu-coated CC electrode material can be a promising electrode material for practical energy storage applications.

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Idioma: En Ano de publicação: 2024 Tipo de documento: Article