Enhanced hydrogen storage properties of MgH2 co-catalyzed with K2NiF6 and CNTs
The composite of MgH 2 /K 2 NiF 6 /carbon nanotubes (CNTs) is prepared by ball milling, and its hydrogenation properties are studied for the first time. MgH 2 co-catalyzed with K 2 NiF 6 and CNTs exhibited an improvement in the onset dehydrogenation temperature and isothermal de/rehydrogenation kine...
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Veröffentlicht in: | Dalton transactions : an international journal of inorganic chemistry 2016-12, Vol.45 (48), p.1938-19388 |
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Format: | Artikel |
Sprache: | eng |
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Zusammenfassung: | The composite of MgH
2
/K
2
NiF
6
/carbon nanotubes (CNTs) is prepared by ball milling, and its hydrogenation properties are studied for the first time. MgH
2
co-catalyzed with K
2
NiF
6
and CNTs exhibited an improvement in the onset dehydrogenation temperature and isothermal de/rehydrogenation kinetics compared with the MgH
2
-K
2
NiF
6
composite. The onset dehydrogenation temperature of MgH
2
doped with 10 wt% K
2
NiF
6
and 5 wt% CNTs is 245 °C, which demonstrated a reduction of 25 °C compared with the MgH
2
+ 10 wt% K
2
NiF
6
composite. In terms of rehydrogenation kinetics, MgH
2
doped with 10 wt% K
2
NiF
6
and 5 wt% CNTs samples absorbed 3.4 wt% of hydrogen in 1 min at 320 °C, whereas the MgH
2
+ 10 wt% K
2
NiF
6
sample absorbed 2.6 wt% of hydrogen under the same conditions. For dehydrogenation kinetics at 320 °C, the MgH
2
+ 10 wt% K
2
NiF
6
+ 5 wt% CNTs sample released 3.3 wt% hydrogen after 5 min of dehydrogenation. By contrast, MgH
2
doped with 10 wt% K
2
NiF
6
released 3.0 wt% hydrogen in the same time period. The apparent activation energy,
E
a
, for the dehydrogenation of MgH
2
doped with 10 wt% K
2
NiF
6
reduced from 100.0 kJ mol
−1
to 70.0 kJ mol
−1
after MgH
2
was co-doped with 10 wt% K
2
NiF
6
and 5 wt% CNTs. Based on the experimental results, the hydrogen storage properties of the MgH
2
/K
2
NiF
6
/CNTs composite is enhanced because of the catalytic effects of the active species of KF, KH and Mg
2
Ni that are formed
in situ
during dehydrogenation, as well as the unique structure of CNTs.
The active species KF, KH and Mg
2
Ni together with the unique structure of the CNTs functioned as a real catalyst. |
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ISSN: | 1477-9226 1477-9234 |
DOI: | 10.1039/c6dt03646e |