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Thermal Plasma Synthesis of Crystalline Gallium Nitride Nanopowder from Gallium Nitrate Hydrate and Melamine

机译:硝酸镓水合物和三聚氰胺的热等离子体合成结晶态氮化镓纳米粉

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摘要

Gallium nitride (GaN) nanopowder used as a blue fluorescent material was synthesized by using a direct current (DC) non-transferred arc plasma. Gallium nitrate hydrate (Ga(NO3)3∙xH2O) was used as a raw material and NH3 gas was used as a nitridation source. Additionally, melamine (C3H6N6) powder was injected into the plasma flame to prevent the oxidation of gallium to gallium oxide (Ga2O3). Argon thermal plasma was applied to synthesize GaN nanopowder. The synthesized GaN nanopowder by thermal plasma has low crystallinity and purity. It was improved to relatively high crystallinity and purity by annealing. The crystallinity is enhanced by the thermal treatment and the purity was increased by the elimination of residual C3H6N6. The combined process of thermal plasma and annealing was appropriate for synthesizing crystalline GaN nanopowder. The annealing process after the plasma synthesis of GaN nanopowder eliminated residual contamination and enhanced the crystallinity of GaN nanopowder. As a result, crystalline GaN nanopowder which has an average particle size of 30 nm was synthesized by the combination of thermal plasma treatment and annealing.
机译:通过使用直流(DC)非转移电弧等离子体合成了用作蓝色荧光材料的氮化镓(GaN)纳米粉。以硝酸镓水合物(Ga(NO3)3∙xH2O)为原料,以NH3气体为氮化源。此外,将三聚氰胺(C3H6N6)粉末注入等离子火焰中,以防止镓氧化为氧化镓(Ga2O3)。应用氩热等离子体合成GaN纳米粉。通过热等离子体合成的GaN纳米粉具有较低的结晶度和纯度。通过退火将其提高到较高的结晶度和纯度。通过热处理可提高结晶度,并通过消除残留的C3H6N6来提高纯度。热等离子体和退火的组合过程适合于合成晶体GaN纳米粉。等离子体合成GaN纳米粉后的退火工艺消除了残留污染并增强了GaN纳米粉的结晶度。结果,通过热等离子体处理和退火的组合,合成了平均粒径为30nm的结晶GaN纳米粉。

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