Hydrothermal Synthesis of Monodispersed LiMnPO4 (010) Nanobelts and [001] Nanorods and Their Applications in Lithium-Ion Batteries
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Title
Hydrothermal Synthesis of Monodispersed LiMnPO4
(010) Nanobelts and [001] Nanorods and Their Applications in Lithium-Ion Batteries
Authors
Keywords
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Journal
EUROPEAN JOURNAL OF INORGANIC CHEMISTRY
Volume 2018, Issue 13, Pages 1533-1539
Publisher
Wiley
Online
2018-01-30
DOI
10.1002/ejic.201701270
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Note: Only part of the references are listed.- Recent Advances of Mn-Rich LiFe1- y Mn y PO4 (0.5 ≤ y < 1.0) Cathode Materials for High Energy Density Lithium Ion Batteries
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- In Situ Catalytic Synthesis of High-Graphitized Carbon-Coated LiFePO4 Nanoplates for Superior Li-Ion Battery Cathodes
- (2015) Zhipeng Ma et al. ACS Applied Materials & Interfaces
- Hydrothermal synthesis of flower-like LiMnPO4nanostructures self-assembled with (010) nanosheets and their application in Li-ion batteries
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- Synthesis of LiFePO 4 @carbon nanotube core–shell nanowires with a high-energy efficient method for superior lithium ion battery cathodes
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- Hierarchical LiMnPO4 assembled from nanosheets via a solvothermal method as a high performance cathode material
- (2015) Zhijian Zhang et al. RSC Advances
- High-performance LiMnPO4 nanorods synthesized via a facile EG-assisted solvothermal approach
- (2015) Ye Hong et al. Journal of Materials Chemistry A
- Tunable Morphology Synthesis of LiFePO4 Nanoparticles as Cathode Materials for Lithium Ion Batteries
- (2014) Zhipeng Ma et al. ACS Applied Materials & Interfaces
- Ascorbic acid-assisted solvothermal synthesis of LiMn 0.9 Fe 0.1 PO 4 /C nanoplatelets with enhanced electrochemical performance for lithium ion batteries
- (2013) Pengjian Zuo et al. JOURNAL OF POWER SOURCES
- LiMn1−xFexPO4 (x = 0, 0.1, 0.2) nanorods synthesized by a facile solvothermal approach as high performance cathode materials for lithium-ion batteries
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- High Performance LiMn1−xFexPO4(0 ≤x≤ 1) Synthesized via a Facile Polymer-Assisted Mechanical Activation
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- Olivine LiCoPO4–carbon composite showing high rechargeable capacity
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