The nanocomposites of reduced graphene oxide (rGO) supported zinc tungstate nanoparticles (ZnWO4-NPs) receive considerable attention in electro-catalytic hydrogen evolution reactions (HER) and reveal significantly higher electro-catalytic performances than pure ZnWO4-NPs in alkaline media (i.e., 0.5 M KOH electrolyte). The polarization studies show that the ZnWO4-NPs@rGO nanocomposites exhibit low energy loss and good electrode stability during electrochemical reactions for HER. Furthermore, the Tafel slope of ZnWO4-NPs@rGO nanocomposites is found to be approximately 149 mV/dec, which closely agrees with the reported Tafel values of the noble metal electrocatalyst. In contrast, the performance of the ZnWO4-NPs@rGO nanocomposite is found to ...
PtAu nanoparticles spontaneously deposited on graphene support, PtAu/rGO, have shown remarkably high...
Development of low cost, environmental friendly and noble metal free catalyst materials with excelle...
Electrochemical water-splitting with non-noble metal catalysts provides an eco-friendly strategy for...
Hydrogen has attracted huge interest globally as a durable, environmentally safe and renewable fuel....
Composite materials: Tungsten disulfide and WS2/reduced graphene oxide (WS2/rGO) nanosheets were fab...
Hydrogen has attracted huge interest globally as a durable, environmentally safe and renewable fuel....
In the extant literature, a wide variety of processes for the production of H2 can be seen but the a...
In the extant literature, a wide variety of processes for the production of H2 can be seen but the a...
Reduced graphene oxide (rGO) nanosheets decorated with gold nanoparticles (Au NPs/rGO), palladium na...
Materials based on earth-abundant elements can be developed for hydrogen evolution reactions to meet...
Cost-effective materials for electrocatalytic water splitting are key to renewable energy research. ...
Materials based on earth-abundant elements can be developed for hydrogen evolution reactions to meet...
An efficient, cost-effective, and earth-abundant catalyst that could drive the production of hydroge...
Electrocatalysts for the oxygen reduction (ORR) reaction play an important role in renewable energy ...
We have prepared a nanocomposite hybrid film to produce a collaborative network of gold (Au) nanopar...
PtAu nanoparticles spontaneously deposited on graphene support, PtAu/rGO, have shown remarkably high...
Development of low cost, environmental friendly and noble metal free catalyst materials with excelle...
Electrochemical water-splitting with non-noble metal catalysts provides an eco-friendly strategy for...
Hydrogen has attracted huge interest globally as a durable, environmentally safe and renewable fuel....
Composite materials: Tungsten disulfide and WS2/reduced graphene oxide (WS2/rGO) nanosheets were fab...
Hydrogen has attracted huge interest globally as a durable, environmentally safe and renewable fuel....
In the extant literature, a wide variety of processes for the production of H2 can be seen but the a...
In the extant literature, a wide variety of processes for the production of H2 can be seen but the a...
Reduced graphene oxide (rGO) nanosheets decorated with gold nanoparticles (Au NPs/rGO), palladium na...
Materials based on earth-abundant elements can be developed for hydrogen evolution reactions to meet...
Cost-effective materials for electrocatalytic water splitting are key to renewable energy research. ...
Materials based on earth-abundant elements can be developed for hydrogen evolution reactions to meet...
An efficient, cost-effective, and earth-abundant catalyst that could drive the production of hydroge...
Electrocatalysts for the oxygen reduction (ORR) reaction play an important role in renewable energy ...
We have prepared a nanocomposite hybrid film to produce a collaborative network of gold (Au) nanopar...
PtAu nanoparticles spontaneously deposited on graphene support, PtAu/rGO, have shown remarkably high...
Development of low cost, environmental friendly and noble metal free catalyst materials with excelle...
Electrochemical water-splitting with non-noble metal catalysts provides an eco-friendly strategy for...