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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Experimental and numerical optical characterization of plasmonic copper nanoparticles embedded in ZnO fabricated by ion implantation and annealing
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Experimental and numerical optical characterization of plasmonic copper nanoparticles embedded in ZnO fabricated by ion implantation and annealing

机译:离子注入和退火制备的嵌入ZnO中的等离激元铜纳米粒子的实验和数值光学表征

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Here we describe the successfully fabrication of metal nanoparticle crystals by implanting copper (Cu) ions into single zinc oxide (ZnO) crystals with ion energy of 400 keV at ion doses of 1 x 10(16) to 1 x 10(17) ions/cm2. After implantation and post-annealing treatment, the Cu implanted ZnO produces a broad range of luminescence emissions, ranging from green to yellow. A green luminescence peak at 550 nm could be ascribed to the isolated Cu ions. The changes in luminescence emission bands between the initial implant and annealed suggest that the implants give rise to clustering Cu nanoparticles in the host matrix but that the annealing process dissociates these. Numerical modelling of the Cu nanoparticles was employed to simulate their optical properties including the extinction cross section, electron energy loss spectroscopy and cathodoluminescence. We demonstrate that the clustering of nanoparticles generates Fano resonances corresponding to the generation of multiple resonances, while the isolation of nanoparticles results in intensity amplification. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这里我们描述了通过将铜(Cu)离子注入离子能量为1 x 10(16)至1 x 10(17)/平方厘米在注入和退火后处理之后,注入铜的ZnO产生从绿色到黄色的各种发光。 550 nm处的绿色发光峰可归因于分离出的Cu离子。初始植入物和退火之间的发光发射带的变化表明,植入物会在主体基质中形成簇状的Cu纳米粒子,但退火过程会使它们解离。铜纳米颗粒的数值模型被用来模拟它们的光学性质,包括消光截面,电子能量损失谱和阴极发光。我们证明,纳米粒子的簇会产生Fano共振,对应于多重共振的产生,而纳米粒子的分离会导致强度放大。 (C)2016 Elsevier B.V.保留所有权利。

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