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Title: Fe–Si networks and charge/discharge-induced phase transitions in Li2FeSiO4 cathode materials

Journal Article · · Physical Chemistry Chemical Physics. PCCP
DOI:https://doi.org/10.1039/C8CP01962B· OSTI ID:1440996
ORCiD logo [1]; ORCiD logo [2]; ORCiD logo [3];  [2]; ORCiD logo [3];  [4];  [5];  [6]
  1. Univ. of Science and Technology of China, Hefei (China); Ames Lab., Ames, IA (United States)
  2. Ames Lab., Ames, IA (United States)
  3. Xiamen Univ., Xiamen (China)
  4. Univ. of Science and Technology of China, Hefei (China)
  5. Ames Laboratory; US DOE; Ames; USA
  6. Univ. of Science and Technology of China, Hefei (China); Iowa State Univ., Ames, IA (United States)

Here, structural phase transitions of electrode materials are responsible for poor reversibility during charge/discharge cycling in Li-ion batteries.

Research Organization:
Ames Laboratory (AMES), Ames, IA (United States)
Sponsoring Organization:
USDOE Office of Science (SC), Basic Energy Sciences (BES)
Grant/Contract Number:
11574284; 11774324; 201506340115; AC02-07CH11358
OSTI ID:
1440996
Alternate ID(s):
OSTI ID: 1437318
Journal Information:
Physical Chemistry Chemical Physics. PCCP, Vol. 20, Issue 21; ISSN 1463-9076
Publisher:
Royal Society of ChemistryCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 11 works
Citation information provided by
Web of Science

References (29)

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Polymorphism and phase transformations of Li 2 x FeSiO 4 ( 0 x 2 ) from first principles journal December 2011
Synthesis Method of the Li-Ion Battery Cathode Material Li2FeSiO4 Using a Molten Carbonate Flux journal January 2011
Voltage- and time-dependent valence state transition in cobalt oxide catalysts during the oxygen evolution reaction journal April 2020
Lead palladium titanate: A room temperature nanoscale multiferroic thin film journal February 2020

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