Impact of the flame retardant additive triphenyl phosphate (TPP) on the performance of graphite/LiFePO4 cells in high power applications
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- Type
- article
- Published
- 2014-06-15
- Cited by
- 56
- References
- 50
- OpenAlex
- https://openalex.org/W2001031104
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:96055473
Keywords
Electrolyte, Graphite, Flammability, Conductivity, Chemistry
References
- Lithium-ion batteries : solid-electrolyte interphase
- Vibrational Spectra and Ion-Pair Properties of Lithium Hexafluorophosphate in Ethylene Carbonate Based Mixed-Solvent Systems for Lithium Batteries
- Theoretical photoionization cross sections from 1 to 1500 keV.
- The Reactivity of Charged Electrode Materials with Electrolytes Containing the Flame Retardant, Triphenyl Phosphate
- Evaluation of Fluorinated Alkyl Phosphates as Flame Retardants in Electrolytes for Li-Ion Batteries: I. Physical and Electrochemical Properties
- Self‐consistent molecular orbital methods. XX. A basis set for correlated wave functions
- Contracted Gaussian basis sets for molecular calculations. I. Second row atoms, Z=11–18
- Characterization of low-flammability electrolytes for lithium-ion batteries
- Dynamic behavior of polymer films in the presence of plasticizers by using ATR-based dynamic compression modulation step-scan Fourier transform infrared spectroscopy, and 2D correlation analysis
- Surface chemistry of carbon-treated LiFePO4 particles for Li-ion battery cathodes studied by PES
- Evaluation of Fluorinated Alkyl Phosphates as Flame Retardants in Electrolytes for Li-Ion Batteries: II. Performance in Cell
- The influence of PMS-additive on the electrode/electrolyte interfaces in LiFePO4/graphite Li-ion batteries
- Flame retardation by phosphorus compounds
- Electrochemical performance of lithium-ion batteries with triphenylphosphate as a flame-retardant additive
- Electrochemical Performance of Li-Ion Batteries Containing Biphenyl, Vinyl Ethylene Carbonate in Liquid Electrolyte
- Electrochemical characterisation and modelling of the mass transport phenomena in LiPF6–EC–EMC electrolyte
- Comparing aging of MCMB graphite/LiFePO4 cells at 22 °C and 55 °C – Electrochemical and photoelectron spectroscopy studies.
- Nonflammable Trimethyl Phosphate Solvent-Containing Electrolytes for Lithium-Ion Batteries: I. Fundamental Properties
- Mixtures of ionic liquid-Alkylcarbonates as electrolytes for safe lithium-ion batteries
- Comparing anode and cathode electrode/electrolyte interface composition and morphology using soft and hard X-ray photoelectron spectroscopy
Cited by
- Low temperature Li-ion battery ageing
- Aging of electrode/electrolyte interfaces in LiFePO4/graphite cells cycled with and without PMS additive
- Electrochemical Characterization and Temperature Dependency of Mass-Transport Properties of LiPF6 in EC:DEC
- Characterization of the Mass-Transport Phenomena in a Superconcentrated LiTFSI:Acetonitrile Electrolyte
- Photoelectron Spectroscopy for Lithium Battery Interface Studies
- Construction of bimodal silsesquioxane-based porous materials from triphenylphosphine or triphenylphosphine oxide and their size-selective absorption for dye molecules
- Triphenyl phosphite as an electrolyte additive to improve the cyclic stability of lithium-rich layered oxide cathode for lithium-ion batteries
- Vinyltriethoxysilane as an electrolyte additive to improve the safety of lithium-ion batteries
- Spectroscopic and Electrochemical Properties of Lithium-Rich LiFePO4 Cathode Synthesized by Solid-State Reaction
- Synergistic Effect of Blended Components in Nonaqueous Electrolytes for Lithium Ion Batteries
- Hybrid Tin Based Nanostructures Wrapped with Graphene as Efficient Anode Material for Lithium Ion Batteries
- Electrochemical Investigation of the Reaction Mechanism in Lithium-Oxygen Batteries
- Three new bifunctional additives for safer nickel-cobalt-aluminum based lithium ion batteries
- Progress of enhancing the safety of lithium ion battery from the electrolyte aspect
- Preparation and characterization of a microencapsulated flame retardant and its flame-retardant mechanism in unsaturated polyester resins
- Simplifying the electrolyte systems with the functional co-solvent.
- Optimized non-flammable concentrated electrolytes by introducing a low-dielectric diluent.
- Electrospun cellulose polymer nanofiber membrane with flame resistance properties for lithium-ion batteries.
- Nonflammable organic electrolytes for high-safety lithium-ion batteries
- Flammability parameters of lithium-ion battery electrolytes
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