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Diamond-like-carbon nanoparticle production and agglomeration following UV multi-photon excitation of static naphthalene/helium gas mixtures

机译:静态萘/氦气混合物的UV多光子激发后类金刚石碳纳米颗粒的产生和团聚

摘要

We report the formation of nanoparticles with significant diamond character after UV multi-photon laser excitation of gaseous naphthalene, buffered in static helium gas, at room temperature. The nanoparticles are identified in situ by their absorption and scattering spectra between 400 and 850 nm, which are modeled using Mie theory. Comparisons of the particles’ spectroscopic and optical properties with those of carbonaceous materials indicate a sp3/sp2 hybridization ratio of 8:1 of the particles formed. The particle extinction in the closed static (unstirred) gas-phase system exhibits a complex and quasi-oscillatory time dependence for the duration of up to several hours with periods ranging from seconds to many minutes. The extinction dynamics of the system is based on a combination of transport features and particle interaction, predominantly agglomeration. The relatively long period of agglomeration allows for a unique analysis of the agglomeration process of diamond-like carbon nanoparticles in situ.
机译:我们报告了在室温下在静态氦气中缓冲的气态萘的紫外多光子激光激发后,形成具有显着金刚石特征的纳米颗粒。纳米颗粒通过其在400至850 nm之间的吸收和散射光谱进行原位鉴定,并使用Mie理论对其进行建模。颗粒的光谱和光学性质与含碳材料的光谱和光学性质的比较表明,形成的颗粒的sp3 / sp2杂化比为8:1。封闭的静态(未搅拌)气相系统中的粒子消光在长达数小时的持续时间内(从几秒到几分钟不等)表现出复杂的和准振荡的时间依赖性。该系统的灭绝动力学基于传输特征和粒子相互作用(主要是团聚)的组合。相对较长的附聚时间允许对原位类金刚石碳纳米颗粒的附聚过程进行独特的分析。

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