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Battery properties of lithium iron phosphate nano-particles synthesized by pulse combustion spray pyrolysis

Yasuhiko Furukawa et al · Society for Science and Technology · 2016

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Lithium iron phosphate/carbon (LFP/C) nano-perticles were successfully synthesized at 500 °C through the pulse jet spray pyrolysis with use of a citric acid aqueous solution. SEM observation and particle size analyzer showed that as-prepared LFP/C nano-particles had spherical and irregular shapes with an average size of 50 nm. XRD and ICP analysis revealed that as-prepared LFP/C nano-particles had an olivine phase with high crystallinity and a homogeneous chemical composition. The carbon content was 10 wt% in the LFP/C nano-perticles. A 2032 type coin cell was used to examine electrochemical properties of the LFP/C cathode. The discharge capacity of LFP/C cathode exhibited 170 at 1 C and 95 mAh/g at 30 C, respectively. The discharge capacity of the LFP/C cathode maintained 86 % of the initial discharge capacity after 500th cycle at 30 C and room temperature. The discharge capacity of the LFP/C cathode exhibited 100 mAh/g at 30 C and 50 °C and maintained 89 % of the initial discharge capacity after 100th cycle.

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APA 7

al, Y. F. E. (2016). Battery properties of lithium iron phosphate nano-particles synthesized by pulse combustion spray pyrolysis. https://doi.org/10.11425/sst.5.47

MLA

al, Yasuhiko Furukawa et. "Battery properties of lithium iron phosphate nano-particles synthesized by pulse combustion spray pyrolysis." 2016. https://doi.org/10.11425/sst.5.47.

Chicago

al, Yasuhiko Furukawa et. 2016. "Battery properties of lithium iron phosphate nano-particles synthesized by pulse combustion spray pyrolysis.". https://doi.org/10.11425/sst.5.47.

Harvard

al, Y. F. E. 2016, Battery properties of lithium iron phosphate nano-particles synthesized by pulse combustion spray pyrolysis, Society for Science and Technology, available at: https://doi.org/10.11425/sst.5.47 [Accessed 5 Aug. 2026].

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Título
Battery properties of lithium iron phosphate nano-particles synthesized by pulse combustion spray pyrolysis
Autor / colaboradores
Yasuhiko Furukawa et al
Editora
Society for Science and Technology
Ano de publicação
2016
ISSN
2186-4942
ISSN
2186-4942
Idioma
Inglés
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