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Enhancement of formaldehyde removal by graphene, S, and N doping on TiO
2
nanocomposite photocatalyst
Birgitta Narindri Rara Winayu, Yun Yan Tsai,
Hsin Chu
環境工程學系
研究成果
:
Article
›
同行評審
8
引文 斯高帕斯(Scopus)
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深入研究「Enhancement of formaldehyde removal by graphene, S, and N doping on TiO
2
nanocomposite photocatalyst」主題。共同形成了獨特的指紋。
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Engineering & Materials Science
Photocatalysts
100%
Formaldehyde
82%
Doping (additives)
73%
Nanocomposites
70%
Reduced Graphene Oxide
69%
Photocatalysis
69%
Photocatalytic activity
37%
Light absorption
33%
Functional groups
28%
Titanium dioxide
28%
Specific surface area
28%
Volatile organic compounds
26%
Electrons
22%
Adsorption
21%
Sulfur
21%
Particle size
20%
Atmospheric humidity
19%
Degradation
15%
Water
11%
Costs
8%
Physics & Astronomy
formaldehyde
81%
nanocomposites
57%
graphene
53%
augmentation
40%
volatile organic compounds
27%
oxides
27%
anatase
23%
electromagnetic absorption
22%
electron transfer
22%
humidity
21%
sulfur
21%
adsorption
16%
degradation
16%
nitrogen
16%
porosity
15%
oxygen
13%
water
12%
characterization
12%
Chemical Compounds
Formaldehyde
56%
Graphene
46%
Nanocomposite
43%
Photocatalysis
41%
Graphene Oxide
34%
Volatile Organic Compound
22%
Solvothermal Method
22%
Humidity
19%
Titanium Dioxide
18%
Photocatalytic Activity
17%
Specific Surface Area
17%
Electron Transfer
15%
Pore
14%
Nitrogen
13%
Adsorption
10%