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Two-dimensional Ga
2
S
3
/g-C
3
N
4
heterojunction composites with highly enhanced photocatalytic activity and stability
Chih Yen Chen
*
, Chia Chieh Tseng
*
此作品的通信作者
電子物理學系
研究成果
:
Article
›
同行評審
13
引文 斯高帕斯(Scopus)
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深入研究「Two-dimensional Ga
2
S
3
/g-C
3
N
4
heterojunction composites with highly enhanced photocatalytic activity and stability」主題。共同形成了獨特的指紋。
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Keyphrases
Two Dimensional
100%
G-C3N4
100%
Enhanced Photocatalytic Activity
100%
Photocatalytic Stability
100%
Heterojunction Composite
100%
Ga2S3
100%
Heterostructure
28%
Methylene Blue Degradation
28%
Reaction Time
28%
High Efficiency
14%
TiO2 Catalyst
14%
Ultrathin
14%
Aqueous Solution
14%
Structural Properties
14%
Annealing Temperature
14%
Light Absorption
14%
Nanosheets
14%
Photocatalyst
14%
Semiconductors
14%
Physical Properties
14%
Synthesis Methods
14%
Photocatalysis
14%
Photocatalytic Applications
14%
Photocatalytic Efficiency
14%
Photocatalytic Performance
14%
Photocatalytic Activity
14%
Optoelectronic Properties
14%
Visible Region
14%
OH Radical
14%
Photocatalytic System
14%
Photocatalyses
14%
Detailed Mechanism
14%
Photogenerated Charge Carriers
14%
Prolonged Lifetime
14%
O2 Radical
14%
TiO2 P25
14%
Degradation Products
14%
Melamine
14%
Nanostructured Catalysts
14%
Time-resolved Fluorescence Spectroscopy
14%
Electron Paramagnetic Resonance Spectroscopy
14%
Pseudo-first-order Kinetic Model
14%
Free Radical Scavenging
14%
Heterostructured Nanomaterials
14%
Efficient Separation
14%
G-C3N4 Photocatalyst
14%
Heterojunction Photocatalyst
14%
Sustainable Resources
14%
Reactive Oxidative Species
14%
Chemistry
Photocatalytic
100%
Photocatalytic Activity
100%
stability
100%
Photocatalyst
75%
Methylene Blue
50%
Titanium Dioxide
25%
Chemical Kinetics Characteristics
25%
Photocatalysis
25%
Photodegradation
25%
EPR Spectroscopy
25%
Radical (Chemistry)
25%
Bioinorganic Synthesis
25%
Time-Resolved Fluorescence Spectroscopy
25%
Melamine
25%
Degradation Product
25%
Nanomaterial
25%
Charge Carrier
25%
Aqueous Solution
25%
Nanosheet
25%
Material Science
Heterojunction
100%
Graphitic Carbon Nitride
100%
Composite Material
100%
Photocatalysts
50%
Structural Property
16%
Titanium Dioxide
16%
Nanosheet
16%
Charge Carrier
16%
Photocatalysis
16%
Kinetic Order
16%
Fluorescence Spectroscopy
16%
Electron Paramagnetic Resonance Spectroscopy
16%
Nanostructured Material
16%