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首页> 外文期刊>Journal of Applied Physics >Analysis of the structure, configuration, and sizing of Cu and Cu oxide nanoparticles generated by fs laser ablation of solid target in liquids
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Analysis of the structure, configuration, and sizing of Cu and Cu oxide nanoparticles generated by fs laser ablation of solid target in liquids

机译:fs激光烧蚀液体中固体靶产生的Cu和Cu氧化物纳米粒子的结构,构型和尺寸

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摘要

We report on the analysis of structure, configuration, and sizing of Cu and Cu oxide nanoparticles (Nps) produced by femtosecond (fs) laser ablation of solid copper target in liquids. Laser pulse energy ranged between 500 μJ and 50 μJ. Water and acetone were used to produce the colloidal suspensions. The study was performed through optical extinction spectroscopy using Mie theory to fit the full experimental spectra, considering free and bound electrons size dependent contributions to the metal dielectric function. Raman spectroscopy and AFM technique were also used to characterize the sample. Considering the possible oxidation of copper during the fabrication process, two species (Cu and Cu_2O) arranged in two structures (bare core or core-shell) and in two configuration types (Cu-Cu_2O or Cu_2O-Cu) were considered for the fitting depending on the laser pulse energy and the surrounding media. For water at high energy, it can be observed that a Cu-Cu_2O configuration fits the experimental spectra of the colloidal suspension, while for decreasing energy and below a certain threshold, a Cu_2O-Cu configuration needs to be included for the optimum fit. Both species coexist for energies below 170 μJ for water. On the other hand, for acetone at high energy, optimum fit of the full spectrum suggests the presence a bimodal Cu-Cu_2O core-shell Nps distribution while for decreasing energy and below a 70 μJ threshold energy value, Cu_2O-Cu core-shell Nps must be included, together with the former configuration, for the fit of the full spectrum. We discuss possible reasons for the changes in the structural configuration of the core-shell Nps.
机译:我们报告了通过飞秒(fs)激光烧蚀液体中的固态铜靶产生的Cu和Cu和Cu氧化物纳米颗粒(Nps)的结构,构型和尺寸分析。激光脉冲能量介于500μJ和50μJ之间。使用水和丙酮制备胶体悬浮液。考虑到自由和束缚电子的大小取决于金属介电功能的贡献,使用Mie理论通过消光光谱法进行了研究,以拟合整个实验光谱。拉曼光谱和原子力显微镜技术也被用来表征样品。考虑到制造过程中铜的可能氧化,考虑以两种结构(裸核或核壳)和两种配置类型(Cu-Cu_2O或Cu_2O-Cu)布置的两种物质(Cu和Cu_2O)进行拟合,具体取决于在激光脉冲能量和周围介质上。对于高能水,可以观察到Cu-Cu_2O构型符合胶体悬浮液的实验光谱,而为了降低能量并低于某个阈值,则需要包含Cu_2O-Cu构型以实现最佳拟合。两种能量共存于水中的能量低于170μJ。另一方面,对于高能量的丙酮,全谱的最佳拟合表明存在双峰Cu-Cu_2O核-壳Nps分布,而对于降低能量且低于70μJ阈值能量值,Cu_2O-Cu核-壳Nps必须与以前的配置一起包括在内,以适应整个频谱。我们讨论了核-壳Nps结构配置变化的可能原因。

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  • 来源
    《Journal of Applied Physics》 |2013年第13期|134305.1-134305.9|共9页
  • 作者单位

    Centro de Investigaciones Opticas (CIOp), (CONICET La Plata - CIC), Argentina;

    Centro de Investigaciones Opticas (CIOp), (CONICET La Plata - CIC), Argentina Departamento de Ciencias Basicas, Facultad de Ingenieria, UNLP, Argentina;

    Departamento de Fisica-IFLP, Universidad Nacional de La Plata-CONICET,L. B. Scaffardi: CIOp CC3 (1897) Gonnet, La Plata, Argentina;

    Centro de Investigaciones Opticas (CIOp), (CONICET La Plata - CIC), Argentina Departamento de Ciencias Basicas, Facultad de Ingenieria, UNLP, Argentina;

    Centro de Investigaciones Opticas (CIOp), (CONICET La Plata - CIC), Argentina Departamento de Ciencias Basicas, Facultad de Ingenieria, UNLP, Argentina;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
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  • 正文语种 eng
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