Formic acid (HCOOH) has great potential as an in situ source of hydrogen for fuel cells, because it offers high energy density, is non-toxic and can be safely handled in aqueous solution. So far, there has been a lack of solid catalysts that are sufficiently active and/or selective for hydrogen production from formic acid at room temperature. Here, we report that Ag nanoparticles coated with a thin layer of Pd atoms can significantly enhance the production of H₂ from formic acid at ambient temperature. Atom probe tomography confirmed that the nanoparticles have a core-shell configuration, with the shell containing between 1 and 10 layers of Pd atoms. The Pd shell contains terrace sites and is electronically promoted by the Ag core, leading ...
High-quality hydrogen can be generated from formic acid triggered by facilely in situ prepared Pd/C ...
Catalysts are involved in a number of established and emerging chemical processes as well as in envi...
Various carbon materials were used as support of polyvinylpyrrolidone (PVP)-capped Pd nanoparticles ...
Formic acid (HCOOH) has great potential as an in situ source of hydrogen for fuel cells, because it ...
news & views activity of those surfaces. This allows the Oxford team to identify active catalyst...
Hydrogen is regarded as a future sustainable and clean energy carrier. Formic acid is a safe and sus...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
Hydrogen is regarded as a future sustainable and clean energy carrier. Formic acid is a safe and sus...
The present study investigates a process for the selective production of hydrogen from the catalytic...
Hydrogen is one of the most promising energy carriers for the production of electricity based on fue...
Heterogeneous catalysts form a highly important part of everyday life, ranging from the production o...
A new one pot, surfactant-free, room temperature synthetic route based on coreduction of Pd2+ and Ag...
The development of safe and efficient H2 generation/storage materials toward a fuel-cell-based H2 ec...
The production of H2 from the so-called Liquid Organic Hydrogen Carriers (LOHC) has recently receive...
The urgency for finding clean energy sources is nowadays latent, and the role of hydrogen in the fut...
High-quality hydrogen can be generated from formic acid triggered by facilely in situ prepared Pd/C ...
Catalysts are involved in a number of established and emerging chemical processes as well as in envi...
Various carbon materials were used as support of polyvinylpyrrolidone (PVP)-capped Pd nanoparticles ...
Formic acid (HCOOH) has great potential as an in situ source of hydrogen for fuel cells, because it ...
news & views activity of those surfaces. This allows the Oxford team to identify active catalyst...
Hydrogen is regarded as a future sustainable and clean energy carrier. Formic acid is a safe and sus...
The need for sustainable energy sources is now more urgent than ever, and hydrogen is significant in...
Hydrogen is regarded as a future sustainable and clean energy carrier. Formic acid is a safe and sus...
The present study investigates a process for the selective production of hydrogen from the catalytic...
Hydrogen is one of the most promising energy carriers for the production of electricity based on fue...
Heterogeneous catalysts form a highly important part of everyday life, ranging from the production o...
A new one pot, surfactant-free, room temperature synthetic route based on coreduction of Pd2+ and Ag...
The development of safe and efficient H2 generation/storage materials toward a fuel-cell-based H2 ec...
The production of H2 from the so-called Liquid Organic Hydrogen Carriers (LOHC) has recently receive...
The urgency for finding clean energy sources is nowadays latent, and the role of hydrogen in the fut...
High-quality hydrogen can be generated from formic acid triggered by facilely in situ prepared Pd/C ...
Catalysts are involved in a number of established and emerging chemical processes as well as in envi...
Various carbon materials were used as support of polyvinylpyrrolidone (PVP)-capped Pd nanoparticles ...