Method for making lithium transition metal olivines using water/cosolvent mixtures

Olivine lithium manganese iron phosphate is made in a coprecipitation process from a water/alcoholic cosolvent mixture. The LMFP particles so obtained exhibit surprisingly high electronic conductivities, which in turn leads to other advantages such as high energy and power densities and excellent cy...

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Main Authors KAO YU-HUA, ZHU LINGBO, OKEN MICHAEL M, ZIEBARTH ROBIN P, YU XINDI, THEIVANAYAGAM MURALI G, HU ING-FENG, SANTHANY STACIE L
Format Patent
LanguageEnglish
Published 26.08.2015
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Abstract Olivine lithium manganese iron phosphate is made in a coprecipitation process from a water/alcoholic cosolvent mixture. The LMFP particles so obtained exhibit surprisingly high electronic conductivities, which in turn leads to other advantages such as high energy and power densities and excellent cycling performance.
AbstractList Olivine lithium manganese iron phosphate is made in a coprecipitation process from a water/alcoholic cosolvent mixture. The LMFP particles so obtained exhibit surprisingly high electronic conductivities, which in turn leads to other advantages such as high energy and power densities and excellent cycling performance.
Author KAO YU-HUA
YU XINDI
SANTHANY STACIE L
THEIVANAYAGAM MURALI G
HU ING-FENG
ZHU LINGBO
OKEN MICHAEL M
ZIEBARTH ROBIN P
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– fullname: THEIVANAYAGAM MURALI G
– fullname: HU ING-FENG
– fullname: SANTHANY STACIE L
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Snippet Olivine lithium manganese iron phosphate is made in a coprecipitation process from a water/alcoholic cosolvent mixture. The LMFP particles so obtained exhibit...
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SubjectTerms BASIC ELECTRIC ELEMENTS
ELECTRICITY
PROCESSES OR MEANS, e.g. BATTERIES, FOR THE DIRECT CONVERSIONOF CHEMICAL INTO ELECTRICAL ENERGY
Title Method for making lithium transition metal olivines using water/cosolvent mixtures
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