An electrochemical synthesis method of reducing graphene oxide (GO) under constant potential is reported. Electrochemical technique offers control over reaction parameters such as the applied voltage, electrical current and reduction time; whereas the desired size and thickness of the film can be pre-determined by controlling the amount of precur- sor GO deposited on the electrode with defined shape and surface area. This synthesis technique produces high quality electrochemically reduced GO (ERGO) film with control- lable size and thickness. Electrochemical symmetrical supercapacitors based on ERGO films achieved a specific capacitance of 128 F/g with an energy density of 17.8 Wh/kg operating within a potential window of 1.0 V in 1.0 M NaN...
信州大学(Shinshu university)博士(工学)この博士論文は、次の学術雑誌論文を一部に使用しています。ELECTROCHEMISTRY. 81(10):873-876 (2013); d...
Supercapacitors, a class of electrochemical energy storage devices with superior power densities and...
The oxygen-containing functional groups in graphene oxide (GO) impose considerable limitations in th...
An electrochemical synthesis method of reducing graphene oxide (GO) under constant potential is repo...
An electrochemical synthesis method of reducing graphene oxide (GO) under constant potential is repo...
An electrochemical synthesis method of reducing graphene oxide (GO) under constant potential is repo...
This work manifests the synthesis of reduced graphene oxide nanosheets through in situ solvothermal ...
Supercapacitors are ideal tools for energy storage due to their wide range of operation temperatures...
Graphene and its derivatives have emerged as peerless electrode materials for energy storage applica...
The fabrication, characterization, and energy storage capacity of a graphene-oxide (GO)-based superc...
The fabrication, characterization, and energy storage capacity of a graphene-oxide (GO)-based superc...
The fabrication, characterization, and energy storage capacity of a graphene-oxide (GO)-based superc...
This paper reports on a facile synthesis method for reduced graphene oxide (rGO)/multi-walled carbon...
The fabrication, characterization, and energy storage capacity of a graphene-oxide (GO)-based superc...
The fabrication, characterization, and energy storage capacity of a graphene-oxide (GO)-based superc...
信州大学(Shinshu university)博士(工学)この博士論文は、次の学術雑誌論文を一部に使用しています。ELECTROCHEMISTRY. 81(10):873-876 (2013); d...
Supercapacitors, a class of electrochemical energy storage devices with superior power densities and...
The oxygen-containing functional groups in graphene oxide (GO) impose considerable limitations in th...
An electrochemical synthesis method of reducing graphene oxide (GO) under constant potential is repo...
An electrochemical synthesis method of reducing graphene oxide (GO) under constant potential is repo...
An electrochemical synthesis method of reducing graphene oxide (GO) under constant potential is repo...
This work manifests the synthesis of reduced graphene oxide nanosheets through in situ solvothermal ...
Supercapacitors are ideal tools for energy storage due to their wide range of operation temperatures...
Graphene and its derivatives have emerged as peerless electrode materials for energy storage applica...
The fabrication, characterization, and energy storage capacity of a graphene-oxide (GO)-based superc...
The fabrication, characterization, and energy storage capacity of a graphene-oxide (GO)-based superc...
The fabrication, characterization, and energy storage capacity of a graphene-oxide (GO)-based superc...
This paper reports on a facile synthesis method for reduced graphene oxide (rGO)/multi-walled carbon...
The fabrication, characterization, and energy storage capacity of a graphene-oxide (GO)-based superc...
The fabrication, characterization, and energy storage capacity of a graphene-oxide (GO)-based superc...
信州大学(Shinshu university)博士(工学)この博士論文は、次の学術雑誌論文を一部に使用しています。ELECTROCHEMISTRY. 81(10):873-876 (2013); d...
Supercapacitors, a class of electrochemical energy storage devices with superior power densities and...
The oxygen-containing functional groups in graphene oxide (GO) impose considerable limitations in th...