Hybrid layer-by-layer composites based on a conducting polyelectrolyte and Fe 3 O 4 nanostructures grafted onto graphene for supercapacitor application

Using the layer-by-layer process, we developed a new and original ternary hybrid material based on magnetite iron oxide raspberry nanostructures, 250–300 nm in size, synthesized directly on few layer graphene (Fe 3 O 4 @FLG) alternated with conducting poly(3,4-ethylenedioxy thiophene):poly(styrene s...

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Veröffentlicht in:Journal of materials chemistry. A, Materials for energy and sustainability Materials for energy and sustainability, 2015, Vol.3 (45), p.22877-22885
Hauptverfasser: Pardieu, Elodie, Pronkin, Sergey, Dolci, Mathias, Dintzer, Thierry, Pichon, Benoit P., Begin, Dominique, Pham-Huu, Cuong, Schaaf, Pierre, Begin-Colin, Sylvie, Boulmedais, Fouzia
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Sprache:eng
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Zusammenfassung:Using the layer-by-layer process, we developed a new and original ternary hybrid material based on magnetite iron oxide raspberry nanostructures, 250–300 nm in size, synthesized directly on few layer graphene (Fe 3 O 4 @FLG) alternated with conducting poly(3,4-ethylenedioxy thiophene):poly(styrene sulfonate) (PEDOT:PSS) as the electrode material for supercapacitors. Magnetite based nanostructures were used as electroactive materials. Graphene and PEDOT:PSS ensured the electrical conductivity. PEDOT:PSS also plays the role of a binder conferring cohesion to the hybrid material. Using spin-coating, the step-by-step buildup leads to very regular and well controlled film properties such as the film thickness and the content of iron oxide. The electrochemical properties of the so-obtained hybrid material were investigated in 0.5 M Na 2 SO 3 aqueous electrolyte by cyclic voltammetry, electrochemical impedance spectroscopy and chronopotentiometry. In contradiction with the reported poor capacitance and poor cycling stability of iron oxide based supercapacitors, hybrid Fe 3 O 4 @FLG/PEDOT:PSS multilayers provide a high specific capacitance (153 F g −1 at 0.1 A g −1 ) and a high structural and cycling stability (114% retention after 3500 cycles). This hybrid developed system opens the route for even higher specific capacitance using other types of metal oxides.
ISSN:2050-7488
2050-7496
DOI:10.1039/C5TA05132K