首页> 外文期刊>Journal of nanoparticle research: An interdisciplinary forum for nanoscale science and technology >Plasma synthesis of titanium nitride, carbide and carbonitride nanoparticles by means of reactive anodic arc evaporation from solid titanium
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Plasma synthesis of titanium nitride, carbide and carbonitride nanoparticles by means of reactive anodic arc evaporation from solid titanium

机译:通过固态钛的反应性阳极电弧蒸发等离子合成氮化钛,碳化物和碳氮化物纳米粒子

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摘要

Plasma methods using the direct evaporation of a transition metal are well suited for the cost-efficient production of ceramic nanoparticles. In this paper, we report on the development of a simple setup for the production of titanium-ceramics by reactive anodic arc evaporation and the characterization of the aerosol as well as the nanopowder. It is the first report on TiCXN1 - X synthesis in a simple anodic arc plasma. By means of extensive variations of the gas composition, it is shown that the composition of the particles can be tuned from titanium nitride over a titanium carbonitride phase (TiCXN1 - X) to titanium carbide as proven by XRD data. The composition of the plasma gas especially a very low concentration of hydrocarbons around 0.2 % of the total plasma gas is crucial to tune the composition and to avoid the formation of free carbon. Examination of the particles by HR-TEM shows that the material consists mostly of cubic single crystalline particles with mean sizes between 8 and 27 nm.
机译:使用直接蒸发过渡金属的等离子体方法非常适合于经济高效地生产陶瓷纳米颗粒。在本文中,我们报告了通过反应性阳极电弧蒸发生产钛陶瓷的简单装置的开发情况,以及气溶胶和纳米粉的表征。这是有关在简单阳极电弧等离子体中合成TiCXN1-X的第一份报告。通过气体组成的广泛变化,显示出可以通过XRD数据证明,将颗粒的组成从碳氮化钛相(TiCXN1-X)上的氮化钛调整为碳化钛。等离子气体的成分,特别是占总等离子气体的0.2%左右的极低浓度的碳氢化合物,对于调整组成并避免形成游离碳至关重要。通过HR-TEM检查颗粒表明,该材料主要由平均尺寸在8至27 nm之间的立方单晶颗粒组成。

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