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Hydrogen Storage Properties of Graphitic Carbon Nitride Nanotube Synthesized by Mix-Grind Technique
Barton Arkhurst, Ruiran Guo, Ghazaleh Bahman Rokh,
Sammy Lap Ip Chan
化學工程與材料工程學系
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引文 斯高帕斯(Scopus)
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Keyphrases
Room Temperature
100%
Hydrogen Storage Capacity
100%
Nanotubes
100%
Hydrogen Storage Properties
100%
G-C3N4 Nanotubes
100%
Graphitized Carbon Nanotubes
100%
Water Splitting
50%
Mobile Application
50%
Facile Approach
50%
High Specific Surface Area
50%
Fuel Cell
50%
Hydrogen Storage
50%
Safety Concerns
50%
Electrochemical System
50%
Structured Surface
50%
Metal-free Catalyst
50%
Photocatalysis
50%
Clean Fuel
50%
Hydrogen Storage Materials
50%
Graphitic Carbon Nitride (g-CN)
50%
Surface Storage
50%
Pressure Tank
50%
Storing Hydrogen
50%
Photocatalyses
50%
Engineering
Hydrogen Storage
100%
Nanotube
100%
Graphitic Carbon Nitride
100%
Room Temperature
33%
Storage Capacity
33%
Realization
16%
Specific Surface Area
16%
Water Splitting
16%
Structure Surface
16%
Safety Concern
16%
Photocatalysis
16%
Produce Hydrogen
16%
Pressurized Tanks
16%
Fuel Cell
16%
Crystal Structure
16%
Material Science
Nanotube
100%
Graphitic Carbon Nitride
100%
Water Splitting
20%
Hydrogen Storage Material
20%
Photocatalysis
20%
Clean Fuel
20%
Surface (Surface Science)
20%
Crystal Structure
20%
Chemical Engineering
Carbon Nitride
100%
Nanotube
100%
Photocatalysis
20%