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首页> 外文期刊>Applied Physics >Electronic energy loss (S_e) sensitivity of electrochemically synthesized free-standing Cu nanowires irradiated by 120 MeV high energy ion beam of different atomic mass
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Electronic energy loss (S_e) sensitivity of electrochemically synthesized free-standing Cu nanowires irradiated by 120 MeV high energy ion beam of different atomic mass

机译:不同原子质量的120 MeV高能离子束辐照电化学合成的自立式铜纳米线的电子能量损失(S_e)敏感性

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摘要

Ion beam irradiation is a technique to tune the properties of copper nanowires for various potential applications. Copper nanowires prepared by template-assisted electrochemical deposition have been irradiated with two different ions S-16(32) and Au-79(197) (Energy = 120 MeV and Charge state = 9 + ), respectively, at different fluences of 1 x 10(11), 5 x 10(11), 1 x 10(12) and 5 x 10(12) ions/cm(2), to study the role of S-e in modifying properties of the nanowires. The rate of energy deposited by incident ion in a material medium is a linear function of atomic number of the incident ion as governed by Bethe-Bloch formula, thus, the modifications produced by both ions in the same host matrix would be different. Scanning Electron Microscopy graphs revealed that nanowires kept their integrity on irradiation with both ions and at all irradiation fluences. The effect of irradiation on the structural properties were studied using X-ray diffraction measurements. Upon irradiation, peak intensity changed significantly due to irradiation-induced defects and was quantitatively calculated using Harris formula. The crystallite size, surface morphology, dislocation density, strengthening coefficient, strain, stress and optical properties were analyzed before and after irradiation. The crystallite size of the nanowires increases with increasing ion fluence and also the strain and dislocation density value decreases for nanowires irradiated with sulphur (9+) ions and opposite trend was observed for nanowires irradiated with Gold (9+) ions. The resistivity data obtained from the I-V characteristics curve was defined by the combined Fuchs-Sondheimer model and Mayadas-Shatzkes model with a surface specularity coefficient of 0.52.[GRAPHICS]
机译:离子束辐照是一种针对各种潜在应用调整铜纳米线特性的技术。通过模板辅助电化学沉积制备的铜纳米线分别以1 x不同的通量分别用两种不同的离子S-16(32)和Au-79(197)(能量= 120 MeV和电荷状态= 9 +)辐照。 10(11),5 x 10(11),1 x 10(12)和5 x 10(12)离子/ cm(2),以研究Se在修饰纳米线特性中的作用。入射离子在材料介质中沉积的能量的速率是入射离子原子数的线性函数,受Bethe-Bloch公式支配,因此,两个离子在同一宿主基质中产生的修饰会有所不同。扫描电子显微镜图显示,纳米线在两种离子辐照下和所有辐照通量下均保持其完整性。使用X射线衍射测量研究了辐照对结构性能的影响。辐照后,峰强度由于辐照引起的缺陷而发生显着变化,并使用哈里斯公式进行了定量计算。分析了辐照前后的晶粒尺寸,表面形貌,位错密度,增强系数,应变,应力和光学性能。纳米线的微晶尺寸随着离子通量的增加而增加,并且用硫(9+)离子辐照的纳米线的应变和位错密度值也降低,并且对于用金(9+)离子辐照的纳米线观察到相反的趋势。由I-V特性曲线获得的电阻率数据由Fuchs-Sondheimer模型和Mayadas-Shatzkes模型相结合定义,表面镜面反射系数为0.52。[图形]

著录项

  • 来源
    《Applied Physics》 |2019年第12期|835.1-835.15|共15页
  • 作者

    Gupta Rashi; Kumar Rajesh;

  • 作者单位

    Guru Gobind Singh Indraprastha Univ Univ Sch Basic & Appl Sci New Delhi 110078 India;

  • 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);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
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