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Study on copper-fullerene nanocomposite irradiated by 120 MeV Au ions

机译:120 meV Au离子铜 - 富勒烯纳米复合材料的研究

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We report the swift heavy ion irradiation induced tailoring of structural properties of nanocomposite thin films of copper nanoparticles embedded in fullerene matrix. Cu metal nanoparticles with low metal concentration (similar to 5 at%) are deposited in fullerene C-60 matrix. The thickness of the combined film is about 50 nm as revealed by Rutherford backscattering spectrometry. The absorbance of copper nanoparticles did not exhibit any characteristic plasmon resonance owing to low concentration of metal. The analysis of results of Raman spectroscopy demonstrated the structural transformation of fullerene to amorphous carbon at high fluence of 120 MeV Au ion beam. The formation of structures such as carbon nanowires as a result of irradiation has been revealed by FESEM micrographs. TEM results confirm the formation of small size copper nanoparticles in pristine film and growth of the Cu particles under the effect of swift heavy ions irradiation. I-V characteristics of metal-fullerene nanocomposite thin films give a clear indication that the value of resistance decreases due to effects of increasing fluence of ion irradiation.
机译:我们报告了富含富勒烯基质覆盖的铜纳米粒子纳米复合薄膜的结构性质剪裁的迅速重离子辐照。具有低金属浓度的Cu金属纳米颗粒(与5%相似)沉积在富勒烯C-60基质中。组合膜的厚度约为50nm,如Rutherford反向散射光谱法所示。由于低浓度的金属,铜纳米粒子的吸光度没有表现出任何特征的等离子体共振。拉曼光谱结果的分析表明,富勒烯的结构转化为120 meV Au离子束的高通量。由于辐射的辐射揭示了碳纳米线等结构的形成。 TEM结果证实了在PRIFT重离离子照射的效果下,在原始薄膜中形成了小尺寸铜纳米粒子的型铜纳米粒子和Cu颗粒的生长。金属 - 富勒烯纳米复合薄膜的I-V特性表明,显然指示由于离子照射的流速增加,电阻值降低。

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