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Mg-based composites for enhanced hydrogen storage performance
Mi Tian, Congxiao Shang
Department of Chemical Engineering
Research output
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Contribution to journal
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Article
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peer-review
43
Citations (SciVal)
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Dive into the research topics of 'Mg-based composites for enhanced hydrogen storage performance'. Together they form a unique fingerprint.
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Engineering & Materials Science
Hydrogen storage
100%
Carbon
59%
Composite materials
45%
Plasmas
40%
Hydrides
21%
Activated carbon
21%
Thermodynamics
14%
Amorphous carbon
13%
Dehydrogenation
12%
Ball milling
11%
Hazardous materials spills
11%
Hydrogenation
10%
Graphene
10%
Reforming reactions
9%
Nanocomposites
9%
Magnesium
9%
Carbon nanotubes
9%
Nanoparticles
8%
Hydrocarbons
7%
Agglomeration
7%
Liquids
5%
Metals
5%
Temperature
3%
Physics & Astronomy
carbon
52%
hydrogen
48%
composite materials
47%
performance
34%
activated carbon
24%
kinetics
20%
thermodynamics
11%
metal hydrides
11%
dehydrogenation
11%
hydrogenation
9%
agglomeration
9%
hydrides
8%
magnesium
8%
hydrocarbons
8%
balls
7%
nanocomposites
7%
carbon nanotubes
7%
graphene
7%
solid state
6%
nanoparticles
5%
matrices
4%
liquids
4%
temperature
2%
energy
2%