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A Dual Ionic Liquid-Based Low-Temperature Electrolyte System
Yifei Xu
, Wendy J. Lin
, Marisa Gliege
, Ryan Gunckel
, Zuofeng Zhao
, Hongyu Yu
,
Lenore L. Dai
Engineering, Ira A. Fulton Schools of (IAFSE)
Research output
:
Contribution to journal
›
Article
›
peer-review
16
Scopus citations
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Keyphrases
Liquid-like
100%
Ionic Liquid
100%
Electrolyte Systems
100%
Low-temperature Electrolyte
100%
Dual Ionic Liquid
100%
Electrolyte
75%
Molecular Interactions
75%
Low Temperature
50%
Transport Properties
50%
Ionic Liquid Electrolyte
50%
Electrochemical Devices
50%
Iodide
50%
Triiodide Ion
50%
Systems-based
25%
Crystallization
25%
Tailored Properties
25%
Room Temperature
25%
Phase Transition
25%
Cyclic Voltammetry
25%
Liquid Electrolyte
25%
Redox Reaction
25%
Glass Transition Temperature
25%
Electrochemical Stability
25%
Redox Couple
25%
Extreme Temperature
25%
Ionicity
25%
Mixture System
25%
High Temperature Applications
25%
Low Operating Temperature
25%
Low Glass Transition Temperature
25%
Couple-based
25%
Ethylammonium Nitrate
25%
Lithium Iodide
25%
Potential Window
25%
Walden Rule
25%
Viscosity Reduction
25%
Ionic Conductivity Enhancement
25%
1-Butyl-3-methylimidazolium Iodide
25%
Conventional Electrolyte
25%
Chemistry
Ionic Liquid
100%
Electrolyte Solution
28%
Glass Transition Temperature
28%
Transport Property
28%
Lithium
14%
Redox Reactions
14%
Ambient Reaction Temperature
14%
Cyclic Voltammetry
14%
Ionic Conductivity
14%
Ethylammonium Nitrate
14%
1-Butyl-3-Methylimidazolium Iodide
14%
stability
14%
Material Science
Ionic Liquid
100%
Glass Transition Temperature
28%
Electrochemical Device
28%
Lithium
14%
Ionic Conductivity
14%
Cyclic Voltammetry
14%
Redox Process
14%