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Ultrathin Carbon Film Electrodes from Vacuum‐Carbonised Cellulose Nanofibril Composite
Authors:Anne Vuorema  Mika Sillanpää  Liza Rassaei  Matthew J Wasbrough  Karen J Edler  Wim Thielemans  Sara E C Dale  Simon Bending  Daniel Wolverson  Frank Marken
Institution:1. Laboratory of Applied Environmental Chemistry, Department of Environmental Sciences, University of Kuopio, Patteristonkatu 1, 50100?Mikkeli, Finland;2. Department of Chemistry, University of Bath, Bath BA2?7AY, UK;3. Driving Innovation in Chemistry and Chemical Engineering (DICE), School of Chemistry and Process and Environmental Research Division‐Faculty of Engineering, University of Nottingham, University Park, Nottingham NG7?2RD, UK;4. Department of Physics, University of Bath, Bath BA2?7AY, UK
Abstract:A novel way to produce ultrathin transparent carbon layers on tin‐doped indium oxide (ITO) substrates is developed. The ITO surface is coated with cellulose nanofibrils (from sisal) via layer‐by‐layer electrostatic binding with poly(diallyldimethylammonium chloride) or PDDAC acting as the binder. The cellulose nanofibril‐PDDAC composite film is then vacuum‐carbonised at 500 °C. The resulting carbon films are characterised by atomic force microscopy (AFM), small angle X‐ray scattering (SAXS), wide‐angle X‐ray scattering (WAXS), and Raman methods. Smooth carbon films with good adhesion to the ITO substrate are formed. The electrochemical characterisation of the carbon films is based on the oxidation of hydroquinone and the reduction of benzoquinone in aqueous phosphate buffer media. A modest effect of the cellulose nanofibril‐PDDAC film on the rate of electron transfer is observed. The effect of the film on the rate of electron transfer after carbonisation is more dramatic. For a 40‐layer cellulose nanofibril‐PDDAC film after carbonisation a two‐order of magnitude change in the rate of electron transfer occurs presumably due to a better interaction of the hydroquinone/benzoquinone system with the electrode surface.
Keywords:Cellulose  Nanofibrils  Carbonisation  Layer‐by‐layer  PDDAC  Poly(diallyldimethylammonium chloride)  Hydroquinone  Benzoquinone  Impedance  Cyclic voltammetry  Sensors
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