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Plasmonic properties and sizing of core-shell Cu-Cu2O nanoparticles fabricated by femtosecond laser ablation in liquids

机译:液体飞秒激光烧蚀制备的核 - 壳Cu-Cu2O纳米粒子的等离子体性能和施胶

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The synthesis and study of optical properties of copper nanoparticles are of great interest since they areapplicable to different areas such as catalysis, lubrication, conductive thin films and nanofluids. Their optical propertiesare governed by the characteristics of the dielectric function of the metal, its size and environment.The study of the dielectric function with radius is carried out through the contribution of free and boundelectrons. The first one is corrected for size using the modification of the damping constant. The second one takes intoconsideration the contribution of the interband transitions from the d-band to the conduction band, considering the larger spacing between electronic energy levels as the particle decreases in size below 2 nm.Taking into account these specific modifications, it was possible to fit the bulk complex dielectric function, andconsequently, determine optical parameters and band energy values such as the coefficient for bound electroncontribution Qbulk = 2 x 1024, gap energy Eg = 1.95 eV, Fermi energy EF = 2.15 eV and damping constant for bound electrons γb = 1.15 x 1014 Hz.The fit of the experimental extinction spectra of the colloidal suspensions obtained by 500 μJ ultrashort pulselaser ablation of solid target in water and acetone, reveals that the nanometric and subnanometric particles have a Cu-Cu2O structure due to an oxidation reaction during the fabrication. The results were compared with those obtained by AFM, observing a very good agreement between the two techniques, showing that Optical Extinction Spectroscopy (OES) is a good complementary technique to standard electron microscopy.© (2012) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
机译:合成和铜纳米颗粒的光学性质的研究是非常令人感兴趣的,因为它们areapplicable到不同的区域,例如催化,润滑,导电性薄膜和纳米流体。它们通过金属的电介质函数的特性支配光学propertiesare,它的大小和与半径的介电函数的environment.The研究是通过游离和boundelectrons的贡献来进行。第一种是使用阻尼常数的修改对大小进行校正。第二个需要intoconsideration从d带到导带中的带间跃迁的贡献,考虑电子的能量水平之间的较大的间隔随着颗粒的尺寸小于2 nm.Taking减小到这些具体的修改,这是可以适合批量复介电函数,andconsequently,确定光学参数和带能量作为系数为界electroncontribution值,例如Qbulk = 2×1024,间隙能量Eg = 1.95电子伏特,费米能量EF = 2.15 eV和用于束缚电子阻尼常数γB= 1.15×1014 Hz.The配合由500μJ超短pulselaser在水和丙酮的固体靶的烧蚀获得的胶态悬浮液的实验消光光谱的,揭示了纳米和亚纳米颗粒具有的Cu-氧化亚铜结构由于在氧化反应制造。结果与通过AFM得到的,观察两种技术之间的非常良好的一致性,表明消光光谱(OES)是一个很好的补充技术标准电子显微镜进行了比较。©图片-光学仪器工程师(2012)著作权协会(SPIE)。仅供个人使用的摘要下载。

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