Formic acid is a valuable chemical derived from biomass, as it has a high hydrogen-storage capacity and appears to be an attractive source of hydrogen for various applications. Hydrogen production via formic acid decomposition is often based on using supported catalysts with Pt-group metal nanoparticles. In the present paper, we show that the decomposition of the acid proceeds more rapidly on single metal atoms (by up to 1 order of magnitude). These atoms can be obtained by rather simple means through anchoring Pt-group metals onto mesoporous N-functionalized carbon nanofibers. A thorough evaluation of the structure of the active site by aberration-corrected scanning transmission electron microscopy (ac-STEM) in high-angle annular dark fiel...
Summary: Strong metal-support interaction (SMSI) has been widely used to improve catalytic performan...
The urgency for finding clean energy sources is nowadays latent, and the role of hydrogen in the fut...
According to our knowledge, single-atom Pd catalysts supported on covalent triazine frameworks (CTF)...
Formic acid is a valuable chemical derived from biomass, as it has a high hydrogen-storage capacity ...
peer-reviewedFormic acid is a valuable chemical derived from biomass, as it has a high hydrogen-stor...
Formic acid is a valuable chemical derived from biomass, as it has a high hydrogen-storage capacity ...
peer-reviewedSingle-site heterogeneous catalysis with isolated Pd atoms was reported earlier, mainly...
Metal–organic framework (MOF)-derived Co-N-C catalysts with isolated single cobalt atoms have been s...
peer-reviewedHydrogen is increasingly used in a variety of applications and holds promise as a repla...
The development of safe and efficient H2 generation/storage materials toward a fuel-cell-based H2 ec...
In recent years, research efforts have focused on the development of safe and efficient H2 generatio...
Formic acid is a potential hydrogen storage molecule which dehydrogenates to form CO<sub>2</sub> and...
In recent years, research efforts have focused on the development of safe and efficient H2 generatio...
Formic acid is a promising liquid organic hydrogen carrier (LOHC) since it has relatively high hydro...
Formic acid has been postulated as one of the most promising liquid organic hydrogen carriers. Numer...
Summary: Strong metal-support interaction (SMSI) has been widely used to improve catalytic performan...
The urgency for finding clean energy sources is nowadays latent, and the role of hydrogen in the fut...
According to our knowledge, single-atom Pd catalysts supported on covalent triazine frameworks (CTF)...
Formic acid is a valuable chemical derived from biomass, as it has a high hydrogen-storage capacity ...
peer-reviewedFormic acid is a valuable chemical derived from biomass, as it has a high hydrogen-stor...
Formic acid is a valuable chemical derived from biomass, as it has a high hydrogen-storage capacity ...
peer-reviewedSingle-site heterogeneous catalysis with isolated Pd atoms was reported earlier, mainly...
Metal–organic framework (MOF)-derived Co-N-C catalysts with isolated single cobalt atoms have been s...
peer-reviewedHydrogen is increasingly used in a variety of applications and holds promise as a repla...
The development of safe and efficient H2 generation/storage materials toward a fuel-cell-based H2 ec...
In recent years, research efforts have focused on the development of safe and efficient H2 generatio...
Formic acid is a potential hydrogen storage molecule which dehydrogenates to form CO<sub>2</sub> and...
In recent years, research efforts have focused on the development of safe and efficient H2 generatio...
Formic acid is a promising liquid organic hydrogen carrier (LOHC) since it has relatively high hydro...
Formic acid has been postulated as one of the most promising liquid organic hydrogen carriers. Numer...
Summary: Strong metal-support interaction (SMSI) has been widely used to improve catalytic performan...
The urgency for finding clean energy sources is nowadays latent, and the role of hydrogen in the fut...
According to our knowledge, single-atom Pd catalysts supported on covalent triazine frameworks (CTF)...