Ammonia−borane (AB) hydrolysis for the generation of hydrogen has been studied using first row transition metal ions, such as Co<sup>2+</sup>, Ni<sup>2+</sup>, and Cu<sup>2+</sup>. In the cases of cobalt- and nickel-assisted AB hydrolysis, amorphous powders are formed that are highly catalytically active for hydrogen generation. Annealing of these amorphous powders followed by powder X-ray diffraction measurements revealed the presence of Co(0) and Co<sub>2</sub>B and Ni(0) and Ni<sub>3</sub>B, respectively. On the other hand, copper-assisted AB hydrolysis was catalyzed by in situ generated H<sup>+</sup> and Cu(0) nanoparticles. The reduction ability of AB for the realization of coinage metal nanoparticles from the respective metal salts ha...
Herein we report the development of a new and cost-effective nanocomposite catalyst for the hydrolys...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
This review reports a survey on the progress in developing highly efficient platinum nanocatalysts f...
Ammonia-borane (AB) hydrolysis for the generation of hydrogen has been studied using first row trans...
International audienceAmmonia borane NH3BH3 (AB) and nickel (Ni) have been considered together as an...
Over the last decade, transition metal nanoparticles have attracted much attention owing to their un...
This paper reports the in-situ generation and catalytic activity of nickel(0) and cobalt(0) nanoclus...
Co–Co<sub>2</sub>B and Ni–Ni<sub>3</sub>B nanocomposites were synthesized by the reduction of Co<sup...
Abstract There is a growing concern related to increasing energy requirement and greenhouse gas emis...
International audienceDihydrogen is one of the sustainable energy vectors envisioned for the future....
Ammonia borane is an appropriate solid hydrogen storage material because of its high hydrogen conten...
Copper nanoparticles have been prepared by the solvated metal atom dispersion (SMAD) method. Oxidati...
Efficient bimetallic nanocatalysts based on non-noble metals are highly desired for the development ...
A low-cost and facile route has been developed for the synthesis of monodisperse CuPd nanoparticles ...
Previously being used as highly active catalyst in the hydrolysis of sodium borohydride, intrazeolit...
Herein we report the development of a new and cost-effective nanocomposite catalyst for the hydrolys...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
This review reports a survey on the progress in developing highly efficient platinum nanocatalysts f...
Ammonia-borane (AB) hydrolysis for the generation of hydrogen has been studied using first row trans...
International audienceAmmonia borane NH3BH3 (AB) and nickel (Ni) have been considered together as an...
Over the last decade, transition metal nanoparticles have attracted much attention owing to their un...
This paper reports the in-situ generation and catalytic activity of nickel(0) and cobalt(0) nanoclus...
Co–Co<sub>2</sub>B and Ni–Ni<sub>3</sub>B nanocomposites were synthesized by the reduction of Co<sup...
Abstract There is a growing concern related to increasing energy requirement and greenhouse gas emis...
International audienceDihydrogen is one of the sustainable energy vectors envisioned for the future....
Ammonia borane is an appropriate solid hydrogen storage material because of its high hydrogen conten...
Copper nanoparticles have been prepared by the solvated metal atom dispersion (SMAD) method. Oxidati...
Efficient bimetallic nanocatalysts based on non-noble metals are highly desired for the development ...
A low-cost and facile route has been developed for the synthesis of monodisperse CuPd nanoparticles ...
Previously being used as highly active catalyst in the hydrolysis of sodium borohydride, intrazeolit...
Herein we report the development of a new and cost-effective nanocomposite catalyst for the hydrolys...
Non-noble metal nanoparticles are notoriously difficult to prepare and stabilize with appropriate di...
This review reports a survey on the progress in developing highly efficient platinum nanocatalysts f...