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New Liquid Chemical Hydrogen Storage Technology
by
Bulushev, Dmitri A.
, Yang, Xinchun
, Zhang, Quan
, Yang, Jun
in
Acids
/ ammonia borane
/ Atoms & subatomic particles
/ By products
/ Carbon
/ Catalysts
/ Composition
/ Dehydrogenation
/ Formic acid
/ Graphene
/ hydrazine hydrate
/ Hydrogen
/ hydrogen storage
/ Liquid hydrogen
/ metal catalysts
/ Methods
/ Nanoparticles
/ Porous materials
/ Potassium
/ Storage
/ Zeolites
2022
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New Liquid Chemical Hydrogen Storage Technology
by
Bulushev, Dmitri A.
, Yang, Xinchun
, Zhang, Quan
, Yang, Jun
in
Acids
/ ammonia borane
/ Atoms & subatomic particles
/ By products
/ Carbon
/ Catalysts
/ Composition
/ Dehydrogenation
/ Formic acid
/ Graphene
/ hydrazine hydrate
/ Hydrogen
/ hydrogen storage
/ Liquid hydrogen
/ metal catalysts
/ Methods
/ Nanoparticles
/ Porous materials
/ Potassium
/ Storage
/ Zeolites
2022
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Do you wish to request the book?
New Liquid Chemical Hydrogen Storage Technology
by
Bulushev, Dmitri A.
, Yang, Xinchun
, Zhang, Quan
, Yang, Jun
in
Acids
/ ammonia borane
/ Atoms & subatomic particles
/ By products
/ Carbon
/ Catalysts
/ Composition
/ Dehydrogenation
/ Formic acid
/ Graphene
/ hydrazine hydrate
/ Hydrogen
/ hydrogen storage
/ Liquid hydrogen
/ metal catalysts
/ Methods
/ Nanoparticles
/ Porous materials
/ Potassium
/ Storage
/ Zeolites
2022
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Journal Article
New Liquid Chemical Hydrogen Storage Technology
2022
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Overview
The liquid chemical hydrogen storage technology has great potentials for high-density hydrogen storage and transportation at ambient temperature and pressure. However, its commercial applications highly rely on the high-performance heterogeneous dehydrogenation catalysts, owing to the dehydrogenation difficulty of chemical hydrogen storage materials. In recent years, the chemists and materials scientists found that the supported metal nanoparticles (MNPs) can exhibit high catalytic activity, selectivity, and stability for the dehydrogenation of chemical hydrogen storage materials, which will clear the way for the commercial application of liquid chemical hydrogen storage technology. This review has summarized the recent important research progress in the MNP-catalyzed liquid chemical hydrogen storage technology, including formic acid dehydrogenation, hydrazine hydrate dehydrogenation and ammonia borane dehydrogenation, discussed the urgent challenges in the key field, and pointed out the future research trends.
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