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A quantitative and qualitative study of gas generation observed in LiFePO4–TiNb2O7 cells
by
Profatilova, Irina
, Mercier-Guyon, Benjamin
, Colin, Jean-François
, Martinet, Sébastien
in
Chemistry
/ Chemistry and Materials Science
/ Electric cells
/ Electrochemistry
/ Electrode materials
/ Electrodes
/ Electrolytes
/ Electrons
/ Fourier transforms
/ Gases
/ Graphite
/ Industrial Chemistry/Chemical Engineering
/ Lithium
/ Lithium-ion batteries
/ Microscopy
/ Outgassing
/ Physical Chemistry
/ Polyvinyl alcohol
/ Research Article
/ Titanium oxides
2024
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A quantitative and qualitative study of gas generation observed in LiFePO4–TiNb2O7 cells
by
Profatilova, Irina
, Mercier-Guyon, Benjamin
, Colin, Jean-François
, Martinet, Sébastien
in
Chemistry
/ Chemistry and Materials Science
/ Electric cells
/ Electrochemistry
/ Electrode materials
/ Electrodes
/ Electrolytes
/ Electrons
/ Fourier transforms
/ Gases
/ Graphite
/ Industrial Chemistry/Chemical Engineering
/ Lithium
/ Lithium-ion batteries
/ Microscopy
/ Outgassing
/ Physical Chemistry
/ Polyvinyl alcohol
/ Research Article
/ Titanium oxides
2024
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A quantitative and qualitative study of gas generation observed in LiFePO4–TiNb2O7 cells
by
Profatilova, Irina
, Mercier-Guyon, Benjamin
, Colin, Jean-François
, Martinet, Sébastien
in
Chemistry
/ Chemistry and Materials Science
/ Electric cells
/ Electrochemistry
/ Electrode materials
/ Electrodes
/ Electrolytes
/ Electrons
/ Fourier transforms
/ Gases
/ Graphite
/ Industrial Chemistry/Chemical Engineering
/ Lithium
/ Lithium-ion batteries
/ Microscopy
/ Outgassing
/ Physical Chemistry
/ Polyvinyl alcohol
/ Research Article
/ Titanium oxides
2024
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A quantitative and qualitative study of gas generation observed in LiFePO4–TiNb2O7 cells
Journal Article
A quantitative and qualitative study of gas generation observed in LiFePO4–TiNb2O7 cells
2024
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Overview
Since 20 years, titanium oxide materials and in particular, lithium titanate spinel Li
4
Ti
5
O
12
(LTO) were considered as promising negative electrode materials for lithium-ion cells. In the case of the TiNb
2
O
7
compound (TNO), which has a larger theoretical lithiation capacity of 388 mAh g
−1
, few studies have focused on the outgassing of the material. In this work, we quantified the volume produced as a function of different cycling parameters and then characterized the produced species and show a prevalence of H
2
gas. The use of carbon coating as a mitigation strategy and its limitation is also discussed.
Graphical abstract
Publisher
Springer Netherlands,Springer Nature B.V
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