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Study of the performance of Ti-Zr based hydrogen storage alloys
H. J. Chuang,
S. L.I. Chan
Department of Chemical and Materials Engineering
Research output
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Contribution to journal
›
Article
›
peer-review
11
Scopus citations
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Keyphrases
Annealing
100%
TiZr
100%
Zr-based
100%
Hydrogen Storage Alloy
100%
Low Pressure
66%
Discharge Capacity
66%
Alloy Powder
66%
Microstructure
33%
Hydrogen Content
33%
Charging Time
33%
As-cast
33%
Surface Treatment
33%
Charge-discharge
33%
Charging-discharging
33%
Plateau Pressure
33%
Ni Substitution
33%
HF Solution
33%
Discharge Properties
33%
Hydrogen Absorption-desorption
33%
Partial Substitution
33%
Activation Time
33%
Discharge Reaction
33%
I Curve
33%
TiZr-based Alloy
33%
Gas-solid Reactions
33%
Engineering
Discharge Capacity
100%
Hydrogen Storage
100%
Pretreatment
50%
Hydrogen Absorption
50%
Alloy Element
50%
Partial Substitution
50%
Discharge Reaction
50%
Solid/Gas Reaction
50%
Material Science
Desorption
100%
Hydrogen Storage Alloys
100%
Chemical Engineering
Desorption
100%