Silica aerogel-supported cobalt nanocomposites as efficient catalysts toward hydrogen generation from aqueous ammonia boraneElectronic supplementary information (ESI) available: EDX of (a) Co/SAG and (b) Co/MCM-41. The plot of hydrogen generation rate versus the concentration of AB. See DOI: 10.1039/c4ra14002h
In this study, a mesoporous silica aerogel-supported cobalt (Co/SAG) nanocomposite synthesized by a facile chemical reduction was used as an alternative catalyst for hydrogen generation from aqueous NH 3 BH 3 . The result showed that Co/SAG exhibited 41% higher hydrogen generation rate for the NH 3...
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Zusammenfassung: | In this study, a mesoporous silica aerogel-supported cobalt (Co/SAG) nanocomposite synthesized by a facile chemical reduction was used as an alternative catalyst for hydrogen generation from aqueous NH
3
BH
3
. The result showed that Co/SAG exhibited 41% higher hydrogen generation rate for the NH
3
BH
3
hydrolysis than the ordered mesoporous silica (MCM-41)-supported Co catalysts (Co/MCM-41) prepared by the same reduction method. This is attributed to the fact that the Co nanoparticles were smaller (less than 5 nm in diameter) and better-deposited in SAG than MCM-41 as observed in the TEM micrographs. It is also found that the Co/SAG catalyst delivered superior turnover frequency (3013 ml H
2
min
−1
g
metal
−1
) and activation energy (46.4 kJ mol
−1
) than most of the Co-based catalysts reported. This study showed that the Co/SAG prepared is a potential non-precious catalyst for hydrogen generation from aqueous NH
3
BH
3
.
For the Co/SAG catalyst, the Co nanoparticles ( |
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ISSN: | 2046-2069 |
DOI: | 10.1039/c4ra14002h |