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Electrolytic preparation of highly loaded deuterides of palladium
T. A. Green
*
, T. I. Quickenden
*
Corresponding author for this work
Chemical And Process Engineering
Research output
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Contribution to journal
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Article
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peer-review
16
Citations (Scopus)
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Material Science
Deuterides
100%
Palladium
100%
Cathode
40%
Electrode
10%
Density
10%
Electrolyte
10%
Hydride
10%
Deuterium
10%
Chemistry
Cathode
40%
Water Type
20%
Electrolysis
20%
Vacuum
10%
Ambient Reaction Temperature
10%
Hydrogen
10%
Heat
10%
Number
10%
Current Density
10%
Reaction Stoichiometry
10%
Concentration
10%
Phase Composition
10%
Acid
10%
Deuterium(.)
10%
Chemical Reaction Product
10%
Resistance
10%
Electrolyte
10%
Purity
10%
Pharmacology, Toxicology and Pharmaceutical Science
Palladium
100%
Hydrogen
10%
Acid
10%
Deuterium
10%
Water
10%
Deuterium Oxide
10%
Hydride
10%
Agricultural and Biological Sciences
Water
20%
Temperature
20%
Measurement
10%
Electrodes
10%
Purity
10%
Pretreatment
10%
Physics
Electrolysis
20%
Heavy Water
10%
Light Water
10%