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Multiple-phases LaFeO
3
decorated with sea-urchin-like Au nanoparticles for photoelectrochemical hydrogen generation from bio-ethanol and 1-butanol
Hsiang Wei Tsai,
Yen Hsun Su
Department of Materials Science and Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
5
Citations (Scopus)
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Dive into the research topics of 'Multiple-phases LaFeO
3
decorated with sea-urchin-like Au nanoparticles for photoelectrochemical hydrogen generation from bio-ethanol and 1-butanol'. Together they form a unique fingerprint.
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Engineering & Materials Science
Gold nanoparticles
98%
Butenes
77%
Ethanol
62%
Heterojunctions
53%
Hydrogen
49%
Red Shift
34%
Photocatalysis
32%
Citric acid
30%
Calcination
26%
Photonics
23%
Energy gap
23%
Hydrogen production
23%
Activation energy
21%
Thermodynamic stability
21%
Irradiation
21%
Plasmas
19%
Wavelength
18%
Catalysts
17%
Water
11%
Temperature
8%
Physics & Astronomy
sea urchins
100%
ethyl alcohol
61%
nanoparticles
41%
hydrogen
38%
heterojunctions
36%
citric acid
28%
plasma resonance
27%
water splitting
26%
hydrogen production
26%
roasting
23%
red shift
21%
catalysts
19%
narrowband
18%
thermal stability
18%
extinction
17%
activation energy
15%
photonics
14%
irradiation
13%
wavelengths
9%
temperature
6%