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Chemosphere, ISSN 0045-6535, 10/2018, Volume 209, pp. 457 - 469
In this report recycled LiFePO (LFP) from exhaust batteries was utilized to form B@C N /LiFePO /CuFe O (BLC) nano-junction as a visible active photocatalyst.... 
Waste management | Water treatment | LiFePO | Photo-degradation | Pharmaceutical effluents | Carbon nitride
Journal Article
ACS Nano, ISSN 1936-0851, 03/2012, Volume 6, Issue 3, pp. 2215 - 2225
Journal Article
ACS Applied Materials and Interfaces, ISSN 1944-8244, 03/2012, Volume 4, Issue 3, pp. 1273 - 1280
Journal Article
Journal of Power Sources, ISSN 0378-7753, 01/2013, Volume 221, pp. 284 - 289
Free-standing poly(3,4-ethylenedioxythiophene) (PEDOT)-LiFePO composite films were successfully prepared by dynamic three phase interline electropolymerization... 
Composite film | Lithium ion batteries | LiFePO | Dynamic three phase interline electropolymerization | Poly(3,4- ethylenedioxythiophene)
Journal Article
Waste Management, ISSN 0956-053X, 02/2019, Volume 85, pp. 437 - 444
Nowadays LiFePO cathode develops rapidly for its advantages of long life span, low cost and non-toxicity, especially in electrical vehicle markets. Because of... 
Lithium-ion batteries | LiFePO | Recycling | Mechanochemical reaction
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2013, Volume 243, pp. 706 - 714
The structure and works of separation of LiFePO /FePO interfaces, interfacial energies, and relevant surface energies are evaluated using ab initio... 
Lithium ion battery | Density functional theory | LiFePO | Fracture | Work of separation
Journal Article
Journal of Power Sources, ISSN 0378-7753, 05/2012, Volume 205, pp. 414 - 419
An organic template assisted synthesis was developed to obtain highly ordered porous LiFePO cathode material. The developed synthesis enabled the use of... 
Cathode material | Organic template assisted synthesis | LiFePO | Three-dimensionally ordered macroporous structure | Li-ion battery
Journal Article
Wuji Cailiao Xuebao/Journal of Inorganic Materials, ISSN 1000-324X, 04/2012, Volume 27, Issue 4, pp. 422 - 426
Journal Article
Journal of Power Sources, ISSN 0378-7753, 06/2012, Volume 208, pp. 340 - 344
Three-dimensional porous self-assembled LiFePO /graphene (LFP/G) composite was successfully fabricated using a facile template-free sol-gel approach. Graphene... 
Lithium ion batteries | LiFePO | Graphene nanosheet | Hierarchical network
Journal Article
International Journal of Electrochemical Science, 02/2012, Volume 7, Issue 2, pp. 1688 - 1698
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2012, Volume 200, pp. 92 - 97
[Display omitted] ► Charge capacity of LiFePO 4 without test batteries. ► Charge capacity from electrolysis with solution redox mediator. ► Charge capacity... 
Lithium battery | LiFePO 4 | Bulk electrolysis | 10-Methylphenothiazine | Cathode | Charge capacity
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2009, Volume 189, Issue 1, pp. 738 - 742
An amorphous Si film with thickness of 350 nm was fabricated on both Cu substrate and Ni film (under layer)/Cu substrate by direct current (DC) and radio... 
LiFePO 4 | Under layer | Li ion battery | Si anode | Full cell | LiFePO | ELECTROCHEMISTRY | CAPACITY | RECHARGEABLE BATTERIES | AMORPHOUS-SILICON | ENERGY & FUELS | DEPOSITION | MATERIALS SCIENCE, MULTIDISCIPLINARY | CHEMISTRY, PHYSICAL | ANODES | CATHODE | LiFePO4 | INSERTION/EXTRACTION | LITHIUM | Thin films | Dielectric films | Batteries | Electrodes | Direct current | Silicon substrates | Clusters | Silicon | Nickel | Copper | Current density
Journal Article
Canadian Journal of Chemical Engineering, ISSN 0008-4034, 2019, Volume 97, Issue 8, pp. 2224 - 2233
Journal Article
Case Studies in Thermal Engineering, ISSN 2214-157X, 03/2019, Volume 13
It is a promising development strategy to use LiFePO /Graphene (LFP/G) hybrid cathode lithium-ion batteries for electric vehicles (EVs), which can... 
Lithium-ion battery | LiFePO | FLUENT | Graphene | Electrochemical-thermal coupled model
Journal Article
Journal of Power Sources, ISSN 0378-7753, 2012, Volume 203, pp. 130 - 134
► We prepare three-dimensional (3D) graphene network. ► The 3D graphene has high conductivity. ► We fabricate the 3D graphene/LiFePO 4 composite. ► The 3D... 
LiFePO 4 | Lithium ion battery | Electrode materials | High rate | Graphene | Network | LiFePO
Journal Article
Powder Technology, ISSN 0032-5910, 03/2012, Volume 219, pp. 128 - 134
Lithium iron phosphate powders were obtained by solvothermal treatments of quaternary emulsions Triton X-100/cyclohexane/n-hexanol/water at low temperature... 
X-ray diffraction | Scanning electron microscopy | Electrode materials | Lithium iron phosphate (LiFePO
Journal Article
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