In this study, a symmetric supercapacitor has been fabricated by adopting the nanostructured iron oxide (Fe3O4)-activated carbon (AC) composite as the core electrode materials. The composite electrodes were prepared via a facile mechanical mixing process and PTFE polymeric solution has been used as the electrode material binder. Structural analysis of the nanocomposite electrodes were characterized by scanning electron microscopy (SEM) and Brunauer-Emmett-Teller (BET) analysis. The electrochemical performances of the prepared supercapacitor were studied using cyclic voltammetry (CV) and electrochemical impedance spectroscopy (EIS) in 1.0 M Na2SO3 and 1.0 M Na2SO4 aqueous solutions, respectively. The experimental results showed that the high...
Fe3O4 nanoparticles synthesized by a base catalyzed method are tested in an All-Solid-State (ASLB) b...
In view of the problems of nanomaterials in the field of energy storage and pollution removal, energ...
Supercapacitors (SCs) store electrochemical energy at an electrode – electrolyte interface with high...
In this study, a symmetric supercapacitor has been fabricated by adopting the nanostructured iron ox...
In the present work, we have developed a symmetric electrochemical capacitor based on the nanostruct...
In the present study, a hierarchical nanostructure of Fe3O4-porous hydrochar (p-Fe/HC) core shell na...
Electrochemical capacitors, also known as supercapacitors, have attracted considerable attention ove...
A meso-porous composite electrode in which 1-dimensional FeOx nanowires and carbon nanotubes were in...
Tujuan dari penelitian ini yaitu untuk meneliti nanokomposit Fe3O4/C sebagai bahan anoda baterai io...
Herein, a three-dimensional (3D) Fe3O4@C composite with hollow porous structure is prepared by simpl...
Structural and electrochemical behaviors of electrophortically-deposited Fe3O4 and Fe3O4@C nanoparti...
Abstract One-dimensional (1D, wire- and fiber-shaped) supercapacitors have recently attracted intere...
A novel nanocomposite consisting of p-conjugated 2-aminoterephthalic acid (ATA) coated iron oxide (...
AbstractCarbon-carbon (C/C) nanocomposites based on nanodispersed carbon black and pyrolytic carbon ...
The electrode composition material in the supercapacitor affects the storage performance of the supe...
Fe3O4 nanoparticles synthesized by a base catalyzed method are tested in an All-Solid-State (ASLB) b...
In view of the problems of nanomaterials in the field of energy storage and pollution removal, energ...
Supercapacitors (SCs) store electrochemical energy at an electrode – electrolyte interface with high...
In this study, a symmetric supercapacitor has been fabricated by adopting the nanostructured iron ox...
In the present work, we have developed a symmetric electrochemical capacitor based on the nanostruct...
In the present study, a hierarchical nanostructure of Fe3O4-porous hydrochar (p-Fe/HC) core shell na...
Electrochemical capacitors, also known as supercapacitors, have attracted considerable attention ove...
A meso-porous composite electrode in which 1-dimensional FeOx nanowires and carbon nanotubes were in...
Tujuan dari penelitian ini yaitu untuk meneliti nanokomposit Fe3O4/C sebagai bahan anoda baterai io...
Herein, a three-dimensional (3D) Fe3O4@C composite with hollow porous structure is prepared by simpl...
Structural and electrochemical behaviors of electrophortically-deposited Fe3O4 and Fe3O4@C nanoparti...
Abstract One-dimensional (1D, wire- and fiber-shaped) supercapacitors have recently attracted intere...
A novel nanocomposite consisting of p-conjugated 2-aminoterephthalic acid (ATA) coated iron oxide (...
AbstractCarbon-carbon (C/C) nanocomposites based on nanodispersed carbon black and pyrolytic carbon ...
The electrode composition material in the supercapacitor affects the storage performance of the supe...
Fe3O4 nanoparticles synthesized by a base catalyzed method are tested in an All-Solid-State (ASLB) b...
In view of the problems of nanomaterials in the field of energy storage and pollution removal, energ...
Supercapacitors (SCs) store electrochemical energy at an electrode – electrolyte interface with high...