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Intimate interaction of TFSI
−
anions with MoO
3−x
oxygen vacancies boost ionic conductivity of cathode-supported solid polymer electrolyte
Rohan Paste
, Chintam Hanmandlu
, Po Yu Su
, Cheng Hung Hou
, Hsin An Chen
, Chun Wei Pao
, Jing Jong Shyue
, Kuei Hsien Chen
, Heng Liang Wu
,
Hong Cheu Lin
*
, Chih Wei Chu
*
此作品的通信作者
材料科學與工程學系
新世代功能性物質研究中心
研究成果
:
Article
›
同行評審
19
引文 斯高帕斯(Scopus)
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深入研究「Intimate interaction of TFSI
−
anions with MoO
3−x
oxygen vacancies boost ionic conductivity of cathode-supported solid polymer electrolyte」主題。共同形成了獨特的指紋。
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Keyphrases
Cathode Support
100%
Composite Cathode
11%
Composite Polymer Electrolyte
11%
Density Functional Theory
11%
Diffusion Pathway
11%
Discharge Capacity
11%
Dissociation
22%
Enhanced Mechanical Strength
11%
Flammability
11%
Gas Mass
11%
Gaseous Products
11%
Good Mechanical Properties
11%
High Ionic Conductivity
11%
Initial Discharge Capacity
11%
Interfacial Impedance
11%
Intimate Interaction
100%
Ionic Conductivity
100%
Large-scale Production
11%
Lewis Acid Sites
11%
Li Dendrite Growth
11%
LiFePO4
11%
Lithium Bis(fluorosulfonyl)imide (LiFSI)
22%
Lower Flammability Limit
11%
Mass Spectrometry
11%
Mechanical Stability
11%
Mechanical Strength
11%
Nanobelts
44%
Nanofillers
22%
Online Gas Chromatography
11%
Oxygen Deficiency
11%
Oxygen Vacancy
100%
Poly(ethylene oxide)
22%
Polymer Hosts
11%
Solid Polymer Battery
11%
Solid Polymer Electrolyte
100%
Solid-state Electrolyte
11%
Superior Cycling Performance
11%
TFSI Anion
100%
Time-of-flight Secondary Ion Mass Spectrometry (ToF-SIMS)
11%
Engineering
Combustibility
100%
Discharge Capacity
100%
Gas Chromatography
50%
Good Mechanical Property
50%
Mass Production
50%
Mechanical Stability
50%
Nanofiller
100%
Oxygen Vacancy
100%
Time-of-Flight
50%
Material Science
Cathode
100%
Composite Material
20%
Density
10%
Flammability
20%
Gas Chromatography
10%
Ionic Conductivity
100%
Mechanical Stability
10%
Nanoribbon
40%
Oxygen Vacancy
100%
Polyethylene Glycol
20%
Polymer Electrolyte
100%
Secondary Ion Mass Spectrometry
10%
Solid Electrolyte
10%
Strength of Materials
20%
Chemical Engineering
Gas Chromatography
25%
Gaseous Products
25%
Mass Spectrometry
25%
Nanobelts
100%
Polyethylene Glycol
50%
Polyethylene Oxides
50%
Secondary Ion Mass Spectrometry
25%