首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Thermal Emission Spectroscopy of Single, Isolated Carbon Nanoparticles: Effects of Particle Size, Material, Charge, Excitation Wavelength, and Thermal History
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Thermal Emission Spectroscopy of Single, Isolated Carbon Nanoparticles: Effects of Particle Size, Material, Charge, Excitation Wavelength, and Thermal History

机译:单一,隔离碳纳米粒子的热发射光谱:粒度,材料,电荷,激发波长和热历史的影响

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摘要

Results are presented for thermal emission from individually trapped carbon nanoparticles (NPs) in the temperature range from similar to 4000 to similar to 2100 K. We explore the effects on the magnitude and wavelength dependency of the emissivity, epsilon(lambda), of the NP size and charge and of the type of carbon material, including graphite, graphene, diamond, carbon black, and carbon dots. In addition, it is found that heating the NPs, particularly to temperatures above similar to 1900 K, results in significant changes in the emission properties, which is attributed to changes in the distribution of surface and defect sites caused by annealing and sublimation.
机译:结果出现在温度范围内的单独捕获的碳纳米粒子(NPS)的热发射,其温度范围类似于4000至类似于2100K。我们探讨了NP的发射率,ε(Lambda)的幅度和波长依赖性的影响 尺寸和充电以及碳材料的类型,包括石墨,石墨烯,金刚石,炭黑和碳点。 此外,发现加热NPS,特别是高于类似于1900 k的温度,导致发射性能的显着变化,这归因于由退火和升华引起的表面和缺陷部位的变化。

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