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Photochemical water splitting of WO
3
nanoparticles layers on indium tin oxide glass substance after absorbing chlorophyll
C. C. Huang,
Y. H. Su
, S. L. Tu, T. W. Yung, Y. F. Ke, T. H. Chen
材料科學及工程學系
研究成果
:
Article
›
同行評審
3
引文 斯高帕斯(Scopus)
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深入研究「Photochemical water splitting of WO
3
nanoparticles layers on indium tin oxide glass substance after absorbing chlorophyll」主題。共同形成了獨特的指紋。
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Engineering & Materials Science
ITO glass
100%
Chlorophyll
91%
Nanoparticles
56%
Citric acid
50%
Tungsten
48%
Oxides
38%
Acids
30%
Water
30%
Hydrogen production
25%
Crystal growth
15%
Energy gap
12%
Surface morphology
12%
Surface active agents
12%
Semiconductor materials
10%
Physics & Astronomy
water splitting
72%
chlorophylls
71%
tungsten oxides
57%
indium oxides
55%
tin oxides
54%
citric acid
47%
nanoparticles
38%
glass
32%
acids
30%
hydrogen production
28%
surfactants
10%
crystal growth
10%
aqueous solutions
10%
optimization
7%
Chemical Compounds
Tungsten Oxide
68%
Chlorophyll
62%
Tannic Acid
53%
Citric Acid
40%
Nanoparticle
28%
Crystal Growth
13%
Semiconductor
10%
Band Gap
10%
Surfactant
9%
Surface
9%
Aqueous Solution
7%