Current developement about Lithium LiFePO4 battery for stationary energy storage in africa
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Abstract
Stationary energy storage is one of current and major challenge in the
world. LiFePO
(LFP) batteries have been used more and more for
several applications, stationary energy storage specifically.This
technology of batteries is one of promising candidates for power
lithium ion batteries due to their flat voltage profile, environmental
benignity, cycling stability, and high theoretical capacity. However, the
poor electronic conductivity and a low lithium ion diffusion coefficient
of LiFePO
4
4
cathode materials are the mains disadvantage which make
the researchers to investigate on doping materials. This review
summarize the main research which allow to improve electrochemical
performance of the LiFePO
batteries in context of stationary energy
storage. The improvement of LiFePO
4
batteries is mainly due to the
cathode. Li-site doped with particular elements increase the width of
the one-dimensional diffusion channels of lithium ions and decrease the
charge transfer resistance, which resulted in a good electrochemical
performance of doped LiFePO
4
4
. Fe-site doping enhance the electronic
conductivity of LiFePO
while O-site doped with proper ion improve
the intrinsic conductivity and promote the redox potential of LiFePO
4
.
Furthermore, multi-elements co-doping enhance the electrochemical
performances ofLiFePO
cathodes.The more interesting doping are:
LiFe
0.975
Zn
0.025
PO
4
,LiV
4
0.069
Ti
0.025
Fe
and
Li
0.99
La
0.01
Fe
0.9
Mg
0.1
PO
4
0.905
PO
4
4
