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查看斯高帕斯 (Scopus) 概要
洪 緯璿
教授
材料科學與工程研究所
電子郵件
hungwh
ncu.edu
tw
網站
http://in.ncu.edu.tw/mse/teacher14.php
h-index
3334
引文
24
h-指數
按照存儲在普爾(Pure)的出版物數量及斯高帕斯(Scopus)引文計算。
2007
2024
每年研究成果
概覽
指紋
網路
研究成果
(54)
資料集
(6)
類似的個人檔案
(4)
指紋
查看啟用 Wei-Hsuan Hung 的研究主題。這些主題標籤來自此人的作品。共同形成了獨特的指紋。
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Keyphrases
Active Oxygen
12%
Au Nanoparticles (AuNPs)
33%
Carbon Nanotubes
36%
Catalytic Activity
13%
Catalytic Reaction
12%
Chemical Synthesis
16%
CMK-3
20%
CMK-8
16%
CO2 Reduction Reaction (CO2RR)
15%
Cocatalyst
27%
D-band
13%
Electrolyte
21%
Enhancement Factor
13%
Gold Nanoparticles
26%
High Energy Density
20%
High Performance
18%
High Pressure
12%
High Safety
12%
Highly Active
21%
Hot-pressing Process
16%
Ionic Liquid Electrolyte
24%
Iron Oxide
65%
Low Temperature
16%
Molybdenum Trioxide
12%
Multi-walled Carbon Nanotubes (MWCNTs)
18%
Nanoparticles
19%
Ni Foam
15%
NiFe
18%
Non-flammable
15%
Organic Pollutants
15%
Oxygen Evolution Reaction
32%
Photocatalytic
12%
Photocatalytic Activity
22%
Photocurrent
27%
Photoelectrochemical Water Splitting
34%
Photoelectrode
41%
Plasmon
49%
Plasmon Resonance
21%
Plasmonic Enhancement
34%
Plasmonic Heating
16%
Plasmonic Nanoparticles
33%
Plasmonics
41%
Pseudo-cubic
12%
Raman Spectroscopy
14%
Resonance Enhancement
16%
Resonant Frequency
16%
Rutile
65%
Visible Light
13%
Visible Light Irradiation
18%
Water Splitting
39%
Material Science
Absorption Spectra
11%
Amorphous Carbon
10%
Annealing
11%
Anode
21%
Carbon Dioxide
38%
Carbon Nanotube
28%
Carrier Transport
10%
Catalysis
22%
Catalyst Activity
11%
Cathode
14%
Chemical Synthesis
16%
Chemical Vapor Deposition
10%
Composite Material
24%
Density
19%
Electrocatalysts
23%
Energy Density
12%
Film
26%
Finite Difference Method
16%
Gold Nanoparticles
27%
High Energy Density
14%
High-Resolution Transmission Electron Microscopy
14%
Hot Electron
13%
Hot Pressing
16%
Hydrogen Evolution
14%
Ionic Liquid
24%
Iron Oxide
12%
Lithium
13%
Metal Oxide
28%
Nanocomposite
10%
Nanoparticle
100%
Nanosphere
12%
Nanostructure
18%
Nanotube
18%
Ordered Mesoporous Carbon
13%
Oxide Compound
20%
Oxide Semiconductor
11%
Oxygen Evolution
27%
Photocatalysis
11%
Photoluminescence
13%
Potassium
10%
Raman Spectroscopy
12%
Seawater
11%
Silicon
9%
Sodium
13%
Surface (Surface Science)
41%
Surface-Enhanced Raman Spectroscopy
13%
Thin Films
11%
Titanium Dioxide
82%
Titanium Oxide
18%
Water Splitting
82%
Engineering
Broadening
6%
Bubble Formation
8%
Carbon Nanotube
40%
Chemical Vapor Deposition
8%
Cocatalyst
8%
Crystal Structure
8%
Defect Site
8%
Direct Observation
8%
Dye-Sensitized Solar Cell
8%
Electric Field
9%
Electrocatalysts
8%
Enhancement Factor
12%
Field Distribution
6%
Free Enzyme
8%
Fuel Production
8%
Glucose Sensor
8%
Gold Nanoparticles
21%
Heat Losses
8%
Heterostructures
10%
Hot Electron
14%
Hydrogen Evolution Reaction
11%
Induced Electric Field
8%
Laser Power
11%
Light Absorption
5%
Low-Temperature
8%
Lower Limit
8%
Metal Oxide Semiconductor
5%
Nafion
16%
Nafion Membrane
10%
Nanocomposite
8%
Nanomaterial
10%
Nanoparticle
44%
Nanotube
21%
Nanowire
8%
Photocatalysis
12%
Photocatalytic Water Splitting
24%
Photocurrent
29%
Plasmonics
83%
Raman Band
8%
Raman Spectra
26%
Rapid Prototyping
8%
Ray Diffraction
5%
Single-Walled Carbon Nanotube
20%
Slippage
8%
Thin Films
8%
Time Domain
6%
Transfer Process
8%
Valence Band
7%
Vapor Deposition
8%
Water Splitting
22%