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查看斯高帕斯 (Scopus) 概要
高 立誠
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h-index
478
引文
13
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。
2012
2024
每年研究成果
概覽
指紋
網路
研究成果
(18)
類似的個人檔案
(6)
指紋
查看啟用 Li-Cheng Kao 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。
排序方式
重量
按字母排序
Engineering & Materials Science
X ray absorption spectroscopy
100%
Nanorods
76%
X ray absorption
58%
Electrodes
42%
Electrolytes
36%
Titanium dioxide
26%
Nanotubes
26%
Electrons
25%
CdS nanoparticles
22%
Niobium oxide
19%
X ray spectroscopy
17%
Crystal structure
17%
Oxidation
17%
Crystalline materials
16%
Solvation
16%
Lithium
15%
Absorption spectra
15%
Calcium
14%
Vacancies
13%
Lithium-ion batteries
13%
Oxygen vacancies
13%
Discrete Fourier transforms
13%
Density functional theory
12%
Electronic structure
12%
Glycerol
12%
Anodes
12%
Wastewater treatment
12%
Cobalt
11%
Substrates
11%
Hydrogen
10%
X ray scattering
10%
Ions
10%
Adsorption
10%
Fluorine
9%
Sulfur
9%
Conversion efficiency
9%
Hysteresis
9%
Salts
9%
Acids
9%
Iron
9%
Photoelectrochemical cells
9%
Degradation
8%
Niobium
8%
Red Shift
8%
Nanostructures
8%
Copper
8%
Titanium
8%
Polysulfides
8%
Water
7%
Chemical Compounds
X Ray Absorption Spectroscopy
54%
Soft X-Ray
32%
Nanorod
31%
Electrode-Electrolyte Interface
22%
Mesosphere
17%
Rutile
16%
Titanium Dioxide
16%
Fluoride Salt
15%
Behavior as Electrode
14%
Photoelectrode
14%
X-Ray Absorption Spectra
14%
X-Ray Spectroscopy
12%
Paracetamol
12%
X-Ray
12%
Liquid Film
12%
Electron Particle
11%
Dioxygen
11%
Wastewater Treatment
10%
Hysteresis
10%
Calcium(0)
9%
Black
9%
Anode
9%
Oxidation Reaction
8%
Glycerol
8%
Solvation
8%
Nanoparticle
8%
Surface
8%
Nanotube
8%
Simulation
8%
Environment
7%
Crystal Structure
6%
Oxide
6%
X-Ray Scattering
5%
Electronic State
5%
Condensed Matter
5%
Electrochemical Reaction
5%
Hydrogen
5%
Catalytic Reaction Mechanism
5%
Earth & Environmental Sciences
lithium
22%
X-ray spectroscopy
20%
in situ
16%
atomic absorption spectroscopy
13%
mesosphere
11%
electrode
10%
hysteresis
10%
battery
10%
protocol
8%
statistical analysis
8%
estuary
8%
hydrogen
7%
oxidation
7%
sulfur
7%
heavy metal
7%
copper
7%
degradation
6%
oxygen
6%
ion
6%
substrate
6%
electronics
5%
river
5%