Electrochemical double-layer capacitor (EDLC) electrodes are conventionally based on carbon materials, which provide increased chemical stability and the possibility of a large number of charge and discharge cycles. However, their specific capacitance is generally much lower than pseudo-capacitors based on metal oxide or conductive polymer electrodes. Carbon-based electrodes for electrochemical devices can be hybridized with metal oxide functionalities in order to provide catalytic activity that increases their electrochemical performances. We report the preparation of a conductive hybrid electrode of reduced graphene oxide and molybdenum oxide by a facile one-pot hydrothermal synthesis. A three-dimensional network structure comprising grap...
Graphene and related materials have been widely studied due to their superior properties in a wide r...
Graphene, a 2D carbon-based material with exceptional characteristics, has proven its potential in v...
We report the synthesis of hybrid supercapacitor electrodes by a novel reduction of GO with simultan...
Electrochemical double-layer capacitor (EDLC) electrodes are conventionally based on carbon material...
Capacitance loss with the increase of mass loading, originating from the slow electron and ion migra...
The key motivation of this study is to investigate the potential of graphene/metal oxides nanocompos...
We introduce an easy and scalable approach to synthesize alpha-MoO(3)-decorated graphene sheets from...
A hybrid aerogel, composed of MoS2 sheets of 1T (distorted octahedral) and 2H (trigonal prismatic) p...
An electrochemical synthesis which has been optimized to produce layered double hydroxides (LDHs) in...
International audienceThe application of nanohybrids based on polyoxomolybdates, reduced graphene ox...
Supercapacitors have emerged as one of the most promising candidates for high-performance, safe, cle...
A hybrid aerogel, composed of MoS2 sheets of 1T (distorted octahedral) and 2H (trigonal prismatic) ...
In this articles, molybdenum dioxide/graphene composites were successfully prepared by a hydrotherma...
Asymmetric supercapacitors with high energy density are fabricated using a self-assembled reduced gr...
A novel electrochemically exfoliated graphene-molybdophosphoric acid nanohybride (EG-MoPA) was prepa...
Graphene and related materials have been widely studied due to their superior properties in a wide r...
Graphene, a 2D carbon-based material with exceptional characteristics, has proven its potential in v...
We report the synthesis of hybrid supercapacitor electrodes by a novel reduction of GO with simultan...
Electrochemical double-layer capacitor (EDLC) electrodes are conventionally based on carbon material...
Capacitance loss with the increase of mass loading, originating from the slow electron and ion migra...
The key motivation of this study is to investigate the potential of graphene/metal oxides nanocompos...
We introduce an easy and scalable approach to synthesize alpha-MoO(3)-decorated graphene sheets from...
A hybrid aerogel, composed of MoS2 sheets of 1T (distorted octahedral) and 2H (trigonal prismatic) p...
An electrochemical synthesis which has been optimized to produce layered double hydroxides (LDHs) in...
International audienceThe application of nanohybrids based on polyoxomolybdates, reduced graphene ox...
Supercapacitors have emerged as one of the most promising candidates for high-performance, safe, cle...
A hybrid aerogel, composed of MoS2 sheets of 1T (distorted octahedral) and 2H (trigonal prismatic) ...
In this articles, molybdenum dioxide/graphene composites were successfully prepared by a hydrotherma...
Asymmetric supercapacitors with high energy density are fabricated using a self-assembled reduced gr...
A novel electrochemically exfoliated graphene-molybdophosphoric acid nanohybride (EG-MoPA) was prepa...
Graphene and related materials have been widely studied due to their superior properties in a wide r...
Graphene, a 2D carbon-based material with exceptional characteristics, has proven its potential in v...
We report the synthesis of hybrid supercapacitor electrodes by a novel reduction of GO with simultan...