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Direct multipulse laser processing of titanium oxide–graphene oxide nanocomposite thin films

机译:氧化钛-氧化石墨烯纳米复合薄膜的直接多脉冲激光加工

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摘要

Nanocomposite thin films consisting of titanium oxide (TiO2) nanoparticles (NPs) and graphene oxide (GO) platelets were deposited by a spin-coating technique. The obtained films were submitted to direct laser irradiation using a frequency quadrupled Nd:YAG (λ=266 nm, τFWHM≅3 ns, ν=10 Hz) laser source. The effect of the laser processing conditions, as laser fluence value and number of subsequent laser pulses incident onto the same target location, on the surface morphology, crystalline structure, and chemical composition of the TiO2/GO nanocomposite thin films was systematically investigated. The laser fluence values were maintained below the vaporization threshold of the irradiated composite material. With the increase of the laser fluence and number of incident laser pulses melting and coalescence of the TiO2 NPs into inter-connected aggregates as well as rippling of the GO platelets take place. The gradual reduction of GO platelets and the onset of anatase to rutile phase transition were observed at high laser fluence values.
机译:通过旋涂技术沉积由氧化钛(TiO2)纳米颗粒(NPs)和氧化石墨烯(GO)血小板组成的纳米复合薄膜。使用四倍频Nd:YAG(λ= 266 nm,τFWHM≅3ns,ν= 10 Hz)激光源对获得的膜进行直接激光照射。系统研究了激光加工条件,如激光能量密度值和入射到同一目标位置的后续激光脉冲数量,对TiO2 / GO纳米复合薄膜的表面形态,晶体结构和化学组成的影响。激光能量密度值保持在被辐射复合材料的汽化阈值以下。随着激光通量和入射激光脉冲数量的增加,TiO2 NP熔化并聚结成相互连接的聚集体,并发生了GO血小板的起伏。在高激光注量下,观察到GO血小板逐渐减少,锐钛矿开始向金红石相转变。

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