The simplest amine-borane, considered as solid hydrogen storage material, ammonia-borane (H(3)NBH(3)) can release hydrogen gas upon catalytic hydrolysis under mild conditions. Herein, we report the preparation of a novel catalyst, water dispersible laurate-stabilized ruthenium(0) nanoclusters from the dimethylamine-borane reduction of ruthenium(III) chloride in sodium laurate solution at room temperature. The ruthenium nanoclusters in average size of 2.6 +/- 1.2 nm were isolated from the solution and well characterized by using TEM, XPS, FTIR, and UV-visible electronic absorption spectroscopy, The water dispersible laurate-stabilized ruthenium(0) nanoclusters were found to be highly active and long-live catalyst with a TOF of 75 mol H(2)/mo...
Sodium borohydride, NaBH4, has been considered the most attractive hydrogen-storage material for por...
Oleylamine-stabilized ruthenium(0) nanoparticles were in situ generated from the reduction of ruthen...
The development of new storage materials will facilitate the use of hydrogen as a major energy carri...
Herein we report, for the first time, the preparation and characterization of water soluble rhodium(...
Intensive efforts have been devoted to the development of new materials for safe and efficient hydro...
Intensive efforts have been devoted to the development of new materials for safe and efficient hydro...
The development of new storage materials will facilitate the use of hydrogen as a major energy vecto...
Sodium borohydride is stable in aqueous alkaline solution, however, it hydrolyses in water to hydrog...
Intensive efforts have been devoted to the development of new materials for safe and efficient hydro...
Ruthenium(0) nanoparticles supported on xonotlite nanowire (Ru(0)@X-NW) were prepared by the ion exc...
Herein we report the discovery of an in situ generated, highly active nanocatalyst for the room temp...
Ruthenium(0) nanoparticles supported on multiwalled carbon nanotubes (Ru(0)@MWCNT) were in situ form...
Dimethylamine-borane, (CH3)(2)NHBH3, has been considered as one of the attractive materials for the ...
Nanozirconia supported ruthenium(0) nanoparticles (Ru-0/ZrO2) were prepared by impregnation of ruthe...
Addressed herein is the detailed study on in situ generation of poly(N-vinyl-2-pyrrolidone) (PVP) st...
Sodium borohydride, NaBH4, has been considered the most attractive hydrogen-storage material for por...
Oleylamine-stabilized ruthenium(0) nanoparticles were in situ generated from the reduction of ruthen...
The development of new storage materials will facilitate the use of hydrogen as a major energy carri...
Herein we report, for the first time, the preparation and characterization of water soluble rhodium(...
Intensive efforts have been devoted to the development of new materials for safe and efficient hydro...
Intensive efforts have been devoted to the development of new materials for safe and efficient hydro...
The development of new storage materials will facilitate the use of hydrogen as a major energy vecto...
Sodium borohydride is stable in aqueous alkaline solution, however, it hydrolyses in water to hydrog...
Intensive efforts have been devoted to the development of new materials for safe and efficient hydro...
Ruthenium(0) nanoparticles supported on xonotlite nanowire (Ru(0)@X-NW) were prepared by the ion exc...
Herein we report the discovery of an in situ generated, highly active nanocatalyst for the room temp...
Ruthenium(0) nanoparticles supported on multiwalled carbon nanotubes (Ru(0)@MWCNT) were in situ form...
Dimethylamine-borane, (CH3)(2)NHBH3, has been considered as one of the attractive materials for the ...
Nanozirconia supported ruthenium(0) nanoparticles (Ru-0/ZrO2) were prepared by impregnation of ruthe...
Addressed herein is the detailed study on in situ generation of poly(N-vinyl-2-pyrrolidone) (PVP) st...
Sodium borohydride, NaBH4, has been considered the most attractive hydrogen-storage material for por...
Oleylamine-stabilized ruthenium(0) nanoparticles were in situ generated from the reduction of ruthen...
The development of new storage materials will facilitate the use of hydrogen as a major energy carri...