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首页> 外文期刊>Journal of Applied Physics >Size dependent Cu dielectric function for plasmon spectroscopy:Characterization of colloidal suspension generated by fs laser ablation
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Size dependent Cu dielectric function for plasmon spectroscopy:Characterization of colloidal suspension generated by fs laser ablation

机译:等离子光谱中与尺寸有关的Cu介电函数:fs激光烧蚀产生的胶体悬浮液的表征

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摘要

Copper metal nanoparticles (Nps) have received increasing interest during the last years due to their potential applications in several fields of science and technology. Their optical properties depend on the characteristics of the dielectric function of the metal, their size, and the type of environment. The contribution of free and bound electrons on the dielectric function of copper Nps is analyzed as well as their influence on its plasmonic properties. The contribution of free electrons is corrected for particle size under l0nm, introducing a term inversely proportional to the particle's radius in the damping constant. For bound electron contribution, interband transitions from the d-band to the conduction band are considered. For particles with sizes below 2nm, the larger spacing between electronic energy levels must be taken into account by making the electronic density of states in the conduction band size-dependent. Considering these specific modifications, optical parameters and band energy values could be determined by fitting the bulk complex dielectric function. The obtained values were coefficient for bound electron contribution K_(bulk)= 2 ×10~(24), gap energy E_g= 1.95eV, Fermi energy E_F = 2.15eV, and bound electrons damping constant γ_b= 1.15×10~(l4)Hz. Based on the dielectric function determined in this way, experimental extinction spectra of colloid suspensions generated by ultrafast laser ablation of a solid copper target in liquids was fitted using the Drude-interband model and Mie's theory. Depending on the experimental conditions and liquid medium, the particles in the suspension may have nanometric or subnanometric core size and may be capped with a shell of oxide. From the fitting, it was possible to determine the structure and size distribution of spherical bare core and core-shell copper Nps in the nanometer-subnanometer size range. These results were compared with those obtained by standard microscopy techniques such as AFM and HRTEM. There is a very good agreement between the three techniques, showing that optical extinction spectroscopy (OES) is a good complementary technique to standard high resolution electron microscopy and AFM for sizing spherical nanometric-subnanometric Nps. OES has also the advantage of a very good measurement statistics, due to the large number of probed particles across the sample cell. Besides, it avoids coalescence effects since the measurement is made directly on the colloidal suspension.
机译:铜金属纳米粒子(Nps)在过去的几年中由于其在科学和技术领域的潜在应用而受到越来越多的关注。它们的光学性质取决于金属的介电功能特性,其大小和环境类型。分析了自由电子和束缚电子对铜Nps介电功能的贡献及其对等离子体性能的影响。对于10 nm以下的粒径,校正了自由电子的贡献,引入了与阻尼常数中的粒子半径成反比的项。对于束缚电子的贡献,考虑了从d波段到导带的波段间跃迁。对于尺寸小于2nm的粒子,必须通过使导带中状态的电子密度与尺寸相关,来考虑电子能级之间的较大间距。考虑到这些特定的修改,可以通过拟合体复介电函数来确定光学参数和能带值。获得的值是束缚电子贡献系数K_(bulk)= 2×10〜(24),带隙能量E_g = 1.95eV,费米能量E_F = 2.15eV和束缚电子阻尼常数γ_b= 1.15×10〜(l4)赫兹。基于以此方式确定的介电函数,使用德鲁德带间模型和Mie理论拟合了液体中固态铜靶的超快激光烧蚀产生的胶体悬浮液的实验消光光谱。取决于实验条件和液体介质,悬浮液中的颗粒可以具有纳米级或亚纳米级的核尺寸,并且可以被氧化物壳覆盖。通过拟合,可以确定球形裸核和核-壳铜Nps在纳米-亚纳米尺寸范围内的结构和尺寸分布。将这些结果与通过标准显微镜技术(例如AFM和HRTEM)获得的结果进行了比较。三种技术之间有很好的一致性,表明消光光谱法(OES)是对标准高分辨率电子显微镜和AFM进行球形纳米-亚纳米Nps尺寸测定的良好补充技术。 OES还具有非常好的测量统计数据的优势,这是因为整个样品池中都有大量探测到的颗粒。此外,由于直接在胶体悬浮液上进行测量,因此避免了聚结效应。

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  • 来源
    《Journal of Applied Physics》 |2012年第5期|p.054319.1-054319.8|共8页
  • 作者单位

    Centra de Investigaciones Opticas (ClOp), (CONICETLa Plata - CIC), Argentina;

    Centra de Investigaciones Opticas (ClOp), (CONICETLa Plata - CIC), Argentina Departamento de Ciencias Bdsicas, Facultad de Ingenieria, UNLP, Argentina;

    Departamento de Fisica-IFLP, Universidad Nacional de La Plata-CONICET,ClOp CC3 (1897) Gonnet, La Plata, Argentina;

    Centra de Investigaciones Opticas (ClOp), (CONICETLa Plata - CIC), Argentina Departamento de Ciencias Bdsicas, Facultad de Ingenieria, UNLP, Argentina;

    Centra de Investigaciones Opticas (ClOp), (CONICETLa Plata - CIC), Argentina Departamento de Ciencias Bdsicas, 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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