Lithium fluoride (LiF) can be used as a sintering aid that facilitates the etching of spinel particles for the degradation of magnesium aluminum spinel. It can be used in the preparation of carbon-iron LiF nanocomposite-based electrode materials for lithium-ion batteries. It can also form thin interlayers on the counter electrode to enhance the fill factor and stabilize the high open-circuit voltages for polymer solar cells.
Specifications:
Form: Powder Particle size: -300 mesh Mp: 845 °C (lit.) Density: 2.64 g/mL at 25 °C (lit.) SMILES string: [Li+].[F-] Package: 100g / bottle
Reference Article:
Recent progress in LiF materials for safe lithium metal anode of rechargeable batteries: Is LiF the key to commercializing Li metal batteries?
Please click the picture below to find more equipment for preparing solid-state electrolytes or Polymer state electrolytes
Lithium fluoride (LiF) can be used as a sintering aid that facilitates the etching of spinel particles for the degradation of magnesium aluminum spinel. It can be used in the preparation of carbon-iron LiF nanocomposite-based electrode materials for lithium-ion batteries. It can also form thin interlayers on the counter electrode to enhance the fill factor and stabilize the high open-circuit voltages for polymer solar cells.
Specifications:
Form: Powder Particle size: -300 mesh Mp: 845 °C (lit.) Density: 2.64 g/mL at 25 °C (lit.) SMILES string: [Li+].[F-] Package: 100g / bottle
Reference Article:
Recent progress in LiF materials for safe lithium metal anode of rechargeable batteries: Is LiF the key to commercializing Li metal batteries?
Please click the picture below to find more equipment for preparing solid-state electrolytes or Polymer state electrolytes