Formic acid (FA) dehydrogenation at ambient conditions is a promising route for hydrogen (H2) generation but still suffers from low activity and selectivity. Here, potassium hydroxide (KOH) and 3-aminopropyl triethoxysilane (APTES) modified porous carbon derived from the pyrolysis of rice straw (RSNPC) offers an effective support to promote the formation of ultrafine PdAu nanoparticles (NPs). Benefiting from the small sizes of PdAu NPs, the Pd0.7Au0.3/RSNPC catalyst exhibits excellent catalytic performance for FA dehydrogenation reaction with a high turnover frequency (TOF) of 6794.3 mol H2 mol catalyst−1 h−1 at ambient conditions, outperforming most of reported catalysts for FA dehydrogenation under similar conditions
Safe and efficient hydrogen generation and storage has received much attention in recent years. Here...
A composite catalyst including palladium nanoparticles on titania (TiO2) and on nitrogen-modified po...
Safe and efficient generation of renewable hydrogen via dehydrogenation of cheap and sustainable for...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
The urgency for finding clean energy sources is nowadays latent, and the role of hydrogen in the fut...
Various carbon materials were used as support of polyvinylpyrrolidone (PVP)-capped Pd nanoparticles ...
Formic acid has been postulated as one of the most promising liquid organic hydrogen carriers. Numer...
peer-reviewedHydrogen is increasingly used in a variety of applications and holds promise as a repla...
Ultrafine palladium nanoparticles (Pd NPs) supported on carbon nanospheres have been successfully sy...
Formic acid (FA) is found to be a potential candidate for the storage of hydrogen. For dehydrogenati...
A new one pot, surfactant-free, room temperature synthetic route based on coreduction of Pd2+ and Ag...
Excellent Pd supported on carbon catalysts for the dehydrogenation of formic acid were synthesized f...
An effective and low-cost nanocatalyst is designed for formic acid (FA) dehydrogenation to boost pra...
Formic acid (HCOOH) has great potential as an in situ source of hydrogen for fuel cells, because it ...
In light of the given limited available energy resources and the constant increase in energy consump...
Safe and efficient hydrogen generation and storage has received much attention in recent years. Here...
A composite catalyst including palladium nanoparticles on titania (TiO2) and on nitrogen-modified po...
Safe and efficient generation of renewable hydrogen via dehydrogenation of cheap and sustainable for...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
The urgency for finding clean energy sources is nowadays latent, and the role of hydrogen in the fut...
Various carbon materials were used as support of polyvinylpyrrolidone (PVP)-capped Pd nanoparticles ...
Formic acid has been postulated as one of the most promising liquid organic hydrogen carriers. Numer...
peer-reviewedHydrogen is increasingly used in a variety of applications and holds promise as a repla...
Ultrafine palladium nanoparticles (Pd NPs) supported on carbon nanospheres have been successfully sy...
Formic acid (FA) is found to be a potential candidate for the storage of hydrogen. For dehydrogenati...
A new one pot, surfactant-free, room temperature synthetic route based on coreduction of Pd2+ and Ag...
Excellent Pd supported on carbon catalysts for the dehydrogenation of formic acid were synthesized f...
An effective and low-cost nanocatalyst is designed for formic acid (FA) dehydrogenation to boost pra...
Formic acid (HCOOH) has great potential as an in situ source of hydrogen for fuel cells, because it ...
In light of the given limited available energy resources and the constant increase in energy consump...
Safe and efficient hydrogen generation and storage has received much attention in recent years. Here...
A composite catalyst including palladium nanoparticles on titania (TiO2) and on nitrogen-modified po...
Safe and efficient generation of renewable hydrogen via dehydrogenation of cheap and sustainable for...