The redox-active electrolyte supercapacitor (RAES) is a relatively new type of energy storage device. Simple addition of selected redox species in the electrolyte can greatly enhance the energy density of supercapacitors relative to traditional electric double layer capacitors (EDLCs) owing to redox reactions. Studies on the kinetics at the interface of the electrode and redox mediator are important when developing RAESs. In this work, we employ highly accurate scanning electrochemical microscopy (SECM) to extract the kinetic constants at carbon/hydroquinone interfaces. The charge transfer rate constants are 1.2 × 10<sup>–2</sup> and 1.3 × 10<sup>–2</sup> cm s<sup>–1</sup> for the carbon nanotube/hydroquinone and reduced graphene oxide/hydr...
Most methods for improving supercapacitor performance are based on developments of electrode materia...
Most methods for improving supercapacitor performance are based on developments of electrode materia...
© The Author(s) 2015. Most methods for improving supercapacitor performance are based on development...
The prospect of bridging the large energy density of batteries to the power densities of Electrochem...
The prospect of bridging the large energy density of batteries to the power densities of Electrochem...
© 2019, Research Trend. All rights reserved. The recent surging investigations into the applications...
Redox flow batteries (RFBs) are a promising electrochemical technology for the efficient and reliabl...
Redox flow batteries are attractive for large-scale electrochemical energy storage, but sluggish ele...
A redox-active electrolyte supercapacitor (RAES) is a promising system that increases the energy den...
Electric double layer (EDL) capacitors (a.k.a. supercapacitors) which are generally characterised by...
Redox flow batteries are attractive for large-scale electrochemical energy storage, but sluggish ele...
New insights into electrochemical kinetics of the flavin adenine dinucleotide (FAD) redox center of ...
New insights into electrochemical kinetics of the flavin adenine dinucleotide (FAD) redox center of ...
Electric double layer (EDL) capacitors (a.k.a. supercapacitors) which are generally characterised by...
The growing interest in supercapacitors (SCs), also called electrochemical capacitors or ultracapaci...
Most methods for improving supercapacitor performance are based on developments of electrode materia...
Most methods for improving supercapacitor performance are based on developments of electrode materia...
© The Author(s) 2015. Most methods for improving supercapacitor performance are based on development...
The prospect of bridging the large energy density of batteries to the power densities of Electrochem...
The prospect of bridging the large energy density of batteries to the power densities of Electrochem...
© 2019, Research Trend. All rights reserved. The recent surging investigations into the applications...
Redox flow batteries (RFBs) are a promising electrochemical technology for the efficient and reliabl...
Redox flow batteries are attractive for large-scale electrochemical energy storage, but sluggish ele...
A redox-active electrolyte supercapacitor (RAES) is a promising system that increases the energy den...
Electric double layer (EDL) capacitors (a.k.a. supercapacitors) which are generally characterised by...
Redox flow batteries are attractive for large-scale electrochemical energy storage, but sluggish ele...
New insights into electrochemical kinetics of the flavin adenine dinucleotide (FAD) redox center of ...
New insights into electrochemical kinetics of the flavin adenine dinucleotide (FAD) redox center of ...
Electric double layer (EDL) capacitors (a.k.a. supercapacitors) which are generally characterised by...
The growing interest in supercapacitors (SCs), also called electrochemical capacitors or ultracapaci...
Most methods for improving supercapacitor performance are based on developments of electrode materia...
Most methods for improving supercapacitor performance are based on developments of electrode materia...
© The Author(s) 2015. Most methods for improving supercapacitor performance are based on development...