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Zn nanoparticles irradiated with swift heavy ions at low fluences: Optically-detected shape elongation induced by nonoverlapping ion tracks

机译:低通量下快速重离子辐照的锌纳米颗粒:非重叠离子径迹引起的光学检测形状伸长

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摘要

Elongation of metal nanoparticles (NPs) embedded in silica (SiO2) induced by swift heavy-ion (SHI) irradiation, from spheres to spheroids, has been evaluated mainly by transmission electron microscopy (TEM) at high fluences, where tens to thousands of ion tracks were overlapped each other. It is important to clarify whether the high fluences, i.e., track overlaps, are essential for the elongation. In this study the elongation of metal NPs was evaluated at low fluences by linearly polarized optical absorption spectroscopy. Zn NPs embedded in silica were irradiated with 200-MeV Xe14+ ions with an incident angle of 45 degrees. The fluence ranged from 1.0 x 10(11) to 5.0 x 10(13) Xe/cm(2), which corresponds to the track coverage ratio (CR) of 0.050 to 25 by ion tracks. A small but certain dichroism was observed down to 5.0 x 10(11) Xe/cm(2) (CR = 0.25). The comparison with numerical simulation suggested that the elongation of Zn NPs was induced by nonoverlapping ion tracks. After further irradiation each NP experienced multiple SHI impacts, which resulted in further elongation. TEM observation showed the elongated NPs whose aspect ratio (AR) ranged from 1.2 to 1.7 at 5.0 x 10(13) Xe/cm(2). Under almost the same irradiation conditions, Co NPs with the same initial mean radius showed more prominent elongation with AR of similar to 4 at the same fluence, while the melting point (m.p.) of Co is much higher than that of Zn. Less efficient elongation of Zn NPs while lower m.p. is discussed.
机译:迅速重离子(SHI)辐照诱导的二氧化硅(SiO2)中嵌入的金属纳米颗粒(NPs)从球体到球体的伸长率主要是通过透射电子显微镜(TEM)在高通量下进行评估的,其中数十至数千个离子轨道相互重叠。重要的是要弄清楚高通量,即轨道重叠是否对于伸长率是必不可少的。在这项研究中,通过线性偏振光吸收光谱法在低注量下评估了金属NP的伸长率。用200-MeV Xe14 +离子辐照嵌入二氧化硅中的Zn NP,入射角为45度。通量范围从1.0 x 10(11)到5.0 x 10(13)Xe / cm(2),对应于离子迹线的迹线覆盖率(CR)为0.050到25。观察到小但一定的二向色性,低至5.0 x 10(11)Xe / cm(2)(CR = 0.25)。与数值模拟的比较表明,Zn NPs的伸长是由不重叠的离子径迹引起的。进一步辐照后,每个NP都会受到多个SHI冲击,从而导致进一步伸长。 TEM观察显示在5.0 x 10(13)Xe / cm(2)下,长宽比(AR)的纵横比(AR)从1.2到1.7。在几乎相同的辐照条件下,具有相同初始平均半径的Co NP在相同的通量下具有更突出的伸长率,AR约为4,而Co的熔点(m.p.)远高于Zn。 Zn NPs的有效伸长率较低,而熔点较低。讨论。

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