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Spintronic hydrogen evolution induced by surface plasmon of silver nanoparticles loaded on Fe- And Co-doped ZnO nanorods
Po Yen Kung, Fei Pan,
Yen Hsun Su
Department of Materials Science and Engineering
Research output
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Contribution to journal
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Article
›
peer-review
8
Citations (Scopus)
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Dive into the research topics of 'Spintronic hydrogen evolution induced by surface plasmon of silver nanoparticles loaded on Fe- And Co-doped ZnO nanorods'. Together they form a unique fingerprint.
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Engineering & Materials Science
Surface plasmons
100%
Spintronics
96%
Nanorods
92%
Silver nanoparticles
90%
Hydrogen
49%
Surface plasmon resonance
39%
Plasmons
21%
Quantum entanglement
11%
Renewable energy resources
10%
Forster resonance energy transfer
9%
Photoelectrons
9%
Hot electrons
9%
Light polarization
9%
Qubits
8%
Hydrogen production
6%
Energy resources
6%
Semiconductor materials
5%
Radiation
4%
Coatings
4%
Chemical Compounds
Spintronics
81%
Surface Plasmon
73%
Silver Nanoparticle
56%
Nanorod
53%
Surface Plasmon Resonance
34%
Hydrogen
31%
Electron Spin
14%
Hot Electron
12%
Polarized Light
10%
Photoelectron
9%
Fluorescence Resonance Energy Transfer
8%
Energy
8%
Energy Transfer
7%
Semiconductor
6%
Electron Transfer
6%
Green
6%
Reaction Yield
3%