Lithium Nitride:
Metallic lithium, when exposed to air in a room temperature environment, can produce lithium nitride. Lithium produces lithium nitride faster in nitrogen than it can in the air. Currently, all of the lithium has been converted into lithium-nitride. It is much more difficult for alkali-metals to form nitrides when compared with this property. It is possible to prepare sodium nitride only by deposition with an atomic-beam at low temperature.The fine powdered form of lithium nitride can be explosively combustible when heated. It is important to handle lithium nitride in an inert gas atmosphere, such as nitrogen.
Application of Lithium Nitride:
Solid electrolyteLithium nitride has a higher conductivity than other inorganic sodium salts. Lithium nitride has been studied extensively as a cathode and solid electrode material for batteries.
Preparation for cubic boron Nitride
Lithium nitride has many uses, including as an electrolyte. It is also a catalyst that converts hexagonal boron-nitride into cubic boron-nitride.
The organic light emitting device with a layer of electron injected material
Organic Light-Emitting Devices have many advantages, including a full-solid state, active emission, a wide viewing angle (1m), fast response speed, able to be manufactured on flexible substrates, and low power consumption. Lithium nitride is a dopant of the n type that can be added to the tris (8 hydroxy quinoline ) aluminium layer (Alq3) to enhance the performance.
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