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A review on determining the refractive index function, thermal accommodation coefficient and evaporation temperature of light-absorbing nanoparticles suspended in the gas phase using the laser-induced incandescence

机译:使用激光诱导的白炽法测定悬浮在气相中悬浮在气相中的光吸收纳米粒子的热容纳系数和蒸发温度的综述

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摘要

In this review, the possibility of using pulsed, nanosecond laser heating of nanoparticles (NPs) is demonstrated, in order to investigate their thermo-physical properties. This approach is possible because the laser heating produces high NP temperatures that facilitate the observation of their thermal radiation (incandescence). This incandescence depends on the thermo-physical properties of the NPs, such as heat capacity, density, particle size, volume fraction and the refractive index of the particle material, as well as on the heat-mass transfer between the NPs and the surrounding gas media. Thus, the incandescence signal carries information about these properties, which can be extracted by signal analyses. This pulsed laser heating approach is referred to as laser-induced incandescence. Here, we apply this approach to investigate the properties of carbon, metal and carbon-encapsulated Fe NPs. In this review, the recent results of the measurements of the NP refractive index function, thermal energy accommodation coefficient of the NP surface with bath gas molecules and the NP evaporation temperature obtained using laser-induced incandescence are presented and discussed.
机译:在这篇综述中,使用脉冲的可能性,纳米颗粒(NP)的纳秒激光加热证明,为了研究其热物理性能。这种方法是可能的,因为激光加热产生高NP温度下促进其热辐射(白炽)的观察。此白炽依赖于纳米颗粒,如热容量,密度,粒径,体积分数和粒子材料,以及在纳米颗粒之间的热传质的折射率和周围气体的热物理特性媒体。因此,白炽信号携带有关这些属性,其可以通过分析信号中提取信息。此脉冲激光加热方法被称为激光诱导的白炽。在这里,我们将这种方法用于研究碳,金属和碳包覆铁纳米粒子的性质。在这篇综述中,最近的NP折射率函数的测量的结果,使用激光诱导白炽提出并讨论获得具有浴气体分子和NP蒸发温度的NP表面的热能调节系数。

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