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Synthesis of submicron-dispersed carbon phases in water by Nd:YAG laser ablation of graphite

机译:Nd:YAG激光烧蚀石墨中亚微米分散碳相的合成

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Mixtures of micron to submicron complex carbon phases, namely, defective graphene, graphene-like (multi-layered graphene, graphene oxide etc.), graphite flakes etc. as fine suspensions were obtained by pulsed laser ablation of highly purified microcrystalline graphite targets immersed in double distilled water. The fundamental wavelength (λ = 1064 nm) and the fourth harmonic (λ_(FHG) = 266 nm) of a Nd:YAG laser system (15 ns pulse duration, 10 Hz pulse repetition rate) were used in the fabrication process. The laser fluence value corresponding to the onset of the ablation process, the one initiating optical breakdown in water and an intermediate value were used for each of the wavelengths mentioned above. The morphology of the particles dispersed in water was studied by scanning electron microscopy (SEM). Their phase composition and structure were explored by Raman spectroscopy. It showed the presence of some traces of polymerized hydrocarbons (polystyrene, polybutadiene etc.) in addition to the main carbon phases: defected graphene, reduced graphene oxide and graphite.
机译:微米至亚微米复合碳相的混合物,即缺陷的石墨烯,石墨烯样(多层石墨烯,石墨烯氧化物等),石墨薄片等作为精细悬浮液获得的高度纯化的微晶石墨靶浸入双蒸馏水。在制造过程中使用基本波长(λ= 1064nm)和第四次谐波(λ_(λ_(fhg)= 266nm)(15ns脉冲持续时间,10 hz脉冲重复率)。对应于烧蚀过程的开始对应的激光能量值,用于在水中发起光学缩小的一个,用于上述每一个波长。通过扫描电子显微镜(SEM)研究分散在水中的颗粒的形态。通过拉曼光谱探索它们的相组成和结构。除了主要碳相之外,它还表明存在一些痕量的聚合烃(聚苯乙烯,聚丁二烯等):缺点石墨烯,还原氧化石墨烯和石墨。

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