While H2 could be a renewable fuel, the large-scale preparation of cheap, active electrocatalysts for large-scale production remains a challenge. Here, authors use a rapid, solvent-free microwave pyrolysis method to synthesize nanostructured catalysts for large-scale industrial H2 production
Microwave heating has become a useful tool in catalysis to obtain chemical products under unconventi...
Nanoparticles (NPs) are an exciting new class of materials with unique physical and chemical propert...
Hydrogen offers the prospect of a highly effective fuel for future sustainable energy, not only beca...
Nanostructured metal catalysts are of great interest because of their marked catalytic performances....
The development of greener chem. processes is becoming more and more important because this approach...
Uniformly dispersed ruthenium nanoparticlessupported on non-functionalcarbonnanotubes (CNT) have bee...
Designing highly active, stable, and cost-efficient electrocatalysts as alternatives to replace Pt i...
The synthesis of electrochemically active β-Mo2C nanoparticles for hydrogen production was achieved ...
Amorphous molybdenum disulfide (MoS2) is a promising electrochemical catalyst for hydrogen evolution...
Microwave-based methods are widely employed to synthesize metal nanoparticles on various substrates....
Molybdenum sulfide (MoS2 ) has emerged as a promising catalyst for hydrogen evolution applications. ...
Ammonia synthesis is one of the greatest innovations of the 20th century with extensive applications...
Ammonia decomposition reaction to produce COx free hydrogen over molybdenum incorporated mesoporous ...
Microwave-based methods are widely employed to synthesize metal nanoparticles on various substrates....
Metal Chalcogenides (MCs) have emerged as an extremely important class of nanomaterials with applica...
Microwave heating has become a useful tool in catalysis to obtain chemical products under unconventi...
Nanoparticles (NPs) are an exciting new class of materials with unique physical and chemical propert...
Hydrogen offers the prospect of a highly effective fuel for future sustainable energy, not only beca...
Nanostructured metal catalysts are of great interest because of their marked catalytic performances....
The development of greener chem. processes is becoming more and more important because this approach...
Uniformly dispersed ruthenium nanoparticlessupported on non-functionalcarbonnanotubes (CNT) have bee...
Designing highly active, stable, and cost-efficient electrocatalysts as alternatives to replace Pt i...
The synthesis of electrochemically active β-Mo2C nanoparticles for hydrogen production was achieved ...
Amorphous molybdenum disulfide (MoS2) is a promising electrochemical catalyst for hydrogen evolution...
Microwave-based methods are widely employed to synthesize metal nanoparticles on various substrates....
Molybdenum sulfide (MoS2 ) has emerged as a promising catalyst for hydrogen evolution applications. ...
Ammonia synthesis is one of the greatest innovations of the 20th century with extensive applications...
Ammonia decomposition reaction to produce COx free hydrogen over molybdenum incorporated mesoporous ...
Microwave-based methods are widely employed to synthesize metal nanoparticles on various substrates....
Metal Chalcogenides (MCs) have emerged as an extremely important class of nanomaterials with applica...
Microwave heating has become a useful tool in catalysis to obtain chemical products under unconventi...
Nanoparticles (NPs) are an exciting new class of materials with unique physical and chemical propert...
Hydrogen offers the prospect of a highly effective fuel for future sustainable energy, not only beca...