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Highly disordered amorphous Li-battery electrolytes
Yuntong Zhu
, Zachary D. Hood
, Haemin Paik
, Pedro B. Groszewicz
, Steffen P. Emge
, Farheen N. Sayed
, Chengjun Sun
, Moran Balaish
, David Ehre
, Lincoln J. Miara
, Anatoly I. Frenkel
, Igor Lubomirsky
, Clare P. Grey
, Jennifer L.M. Rupp
Massachusetts Institute of Technology
University of Cambridge
Delft University of Technology
United States Department of Energy
Technical University of Munich
TUMint. Energy Research GmbH
Weizmann Institute of Science
Samsung
Stony Brook University
Research output
:
Contribution to journal
›
Article
›
peer-review
16
Scopus citations
Overview
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Keyphrases
Electrolyte
100%
Li-ion Battery
100%
Li-garnet
100%
Amorphous Structure
66%
Network Former
66%
Medium-entropy
66%
Local Structure
33%
Solid-state Electrolyte
33%
Next-generation Batteries
33%
Temperature Range
33%
Grain Boundary
33%
Unique Characteristics
33%
Closed Nature
33%
Face-sharing
33%
Glass Formation
33%
All-solid-state Battery
33%
Low-temperature Synthesis
33%
Hybrid Solid
33%
Network Modifier
33%
Li Transport
33%
Formation Rule
33%
Edge-sharing
33%
Material Science
Amorphous Material
100%
Battery (Electrochemical Energy Engineering)
100%
Garnet
75%
Amorphous Material
50%
Solid Electrolyte
25%
All-Solid-State Batteries
25%
Glass Formation
25%
Grain Boundary
25%