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Optimizing electrolyte additive loadings in NMC532/Graphite cells: Vinylene carbonate and ethylene sulfate
T. Taskovic, L. M. Thompson, A. Eldesoky, M. D. Lumsden,
J. R. Dahn
Office of Academic Affairs
科研成果
:
期刊稿件
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文章
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同行评审
29
引用 (Scopus)
综述
指纹
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探究 'Optimizing electrolyte additive loadings in NMC532/Graphite cells: Vinylene carbonate and ethylene sulfate' 的科研主题。它们共同构成独一无二的指纹。
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Keyphrases
Additive Combination
25%
C-condition
25%
Capacity Retention
25%
Charge-discharge Cycling
25%
Dimethyl Carbonate
25%
Electrolyte
50%
Electrolyte Additive
100%
Electrolyte Composition
25%
Electrolyte Salt
25%
Ethyl Methyl Carbonate
25%
Ethylene Carbonate
25%
Ethylene Sulfite
100%
Gas Chromatography-mass Spectrometry
50%
Graphite Cell
100%
Impedance Growth
25%
Impedance Spectra
25%
LiNi0.5Mn0.3Co0.2O2
25%
LiPF6
25%
Lithium
50%
Low Impedance
25%
Micro X-ray Fluorescence
25%
Negative Electrode
75%
NMC532
100%
NMR Spectroscopy
50%
Positive Electrode
25%
Positive Electrode Active Materials
25%
Salt Intake
25%
Vinylene Carbonate
100%
Weight Percentage
25%
Chemistry
Dimethyl Carbonate
33%
Electrolyte Additive
100%
Ethyl
33%
Ethylene
100%
Gas Chromatography Mass Spectrometry (GCMS)
66%
Lithium
66%
NMR Spectroscopy
66%
Phase Composition
33%
Sulfate
100%
Transition Metals
66%
X-Ray Fluorescence Spectroscopy
33%
Engineering
Active Material
33%
Electrolyte Additive
100%
Ethylene Carbonate
33%
Gas Chromatography Mass Spectrometry
66%
Negative Electrode
100%
Nuclear Magnetic Resonance
66%
Positive Electrode
66%
Produced Gas
33%
Retention Capacity
33%
X-Ray Fluorescence
33%
Material Science
Electrolyte Additive
100%
Gas Chromatography Mass Spectrometry
100%
Lithium
100%
Nuclear Magnetic Resonance Spectroscopy
100%
Transition Metal
100%
X-Ray Fluorescence Spectroscopy
50%
Food Science
Ethylene
100%
Gas Chromatography Mass Spectrometry
66%
Medicine and Dentistry
Transition Element
28%
X-Ray Fluorescence Spectroscopy
14%