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Effects of in situ graphitic nanocarbon coatings on cycling performance of silicon-flake-based anode of lithium ion battery
Yonhua Tzeng
, Wei Chih Huang, Cheng Ying Jhan, Yi Hsuan Wu
微電子工程研究所
研究成果
:
Article
›
同行評審
6
引文 斯高帕斯(Scopus)
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指紋
指紋
深入研究「Effects of in situ graphitic nanocarbon coatings on cycling performance of silicon-flake-based anode of lithium ion battery」主題。共同形成了獨特的指紋。
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Physics & Astronomy
anodes
48%
augmentation
5%
camphor
14%
carbon
25%
carbon fibers
20%
carbon nanotubes
16%
catalysts
8%
cells
5%
coatings
37%
conductivity
6%
containers
9%
cycles
37%
deposits
8%
electric batteries
57%
ferrocenes
13%
flakes
64%
impedance
7%
ions
26%
iron
6%
lithium
49%
manufacturing
7%
nanoparticles
12%
performance
24%
Raman spectroscopy
7%
scanning electron microscopy
6%
silicon
30%
spectroscopy
4%
temperature
2%
vapor deposition
14%
wafers
7%
water vapor
9%
Engineering & Materials Science
Anodes
54%
Camphor
20%
Carbon
25%
Carbon films
17%
Catalysts
9%
Chemical vapor deposition
26%
Coatings
42%
Containers
10%
Cyclic voltammetry
16%
Deposits
11%
Electrochemical impedance spectroscopy
13%
Energy dispersive spectroscopy
11%
Hot Temperature
5%
Iron
10%
Lithium-ion batteries
60%
Nanocarbon
100%
Nanoparticles
22%
Raman spectroscopy
15%
Scanning electron microscopy
8%
Silicon
44%
Silicon wafers
13%
Temperature
9%
Water vapor
12%
Chemical Compounds
Anode
41%
Camphor
17%
Carbon Atom
26%
Carbon Fiber
25%
Carbon Nanotube
20%
Catalyst
5%
Chemical Vapour Deposition
12%
Conductivity
9%
Cyclic Voltammetry
9%
Dimension
10%
Ferrocene
13%
Flake Like Crystal
59%
Liquid Film
6%
Nanoparticle
14%
Raman Spectroscopy
10%
Surface
4%
Time
5%
Water Vapor
13%