Kumar Manish, Jangid Teena, Panchal Vandana, Kumar Praveen, Pathak Abhishek
Department of Physics, Central University of Rajasthan, NH-8, Kishangarh, 305801, India.
Department of Physics, Kurukshetra University, Kurukshetra, 136119, India.
Nanoscale Res Lett. 2016 Dec;11(1):454. doi: 10.1186/s11671-016-1665-5. Epub 2016 Oct 11.
Apart from the spherical shape, control over other shapes is a technical challenge in synthesis approaches of nanostructures. Here, we studied the effect of grazing angle cross-irradiation Ag thin films for the nanostructures evolution from a top-down approach. Ag thin films of different thicknesses were deposited on Si (100) and glass substrates by electron beam evaporation system and subsequently irradiated at grazing angle ions by 80 keV Ar in two steps (to induce effectively a cross-ion irradiation). Pristine films exhibited dense and uniform distribution of Ag nanoparticles with their characteristic surface plasmon resonance-induced absorption peak around 420 nm. When the film surfaces were treated with cross-grazing angle irradiation of Ar ions with varying effective fluences from 0.5 × 10 ions/cm to 2.0 × 10 ions/cm, it was found that fluence values governed the competition of sputtering and sputter re-deposition of Ag. As a result, lower irradiation fluence favoured the formation of cone-like nanostructures, whereas high fluence values demonstrated dominant sputtering. Fluence-dependent modification of surface features was studied through the Fourier transform infrared spectroscopy and the Rutherford backscattering spectroscopy. Theoretical justifications for the underlying mechanisms are presented to justify the experimental results.
除了球形之外,在纳米结构的合成方法中,控制其他形状是一项技术挑战。在此,我们从自上而下的方法研究了掠角交叉辐照银薄膜对纳米结构演变的影响。通过电子束蒸发系统将不同厚度的银薄膜沉积在硅(100)和玻璃基板上,随后分两步用80 keV的氩离子以掠角进行辐照(以有效诱导交叉离子辐照)。原始薄膜呈现出密集且均匀分布的银纳米颗粒,其特征性的表面等离子体共振诱导吸收峰在420 nm左右。当用有效通量从0.5×10离子/cm到2.0×10离子/cm变化的氩离子交叉掠角辐照处理薄膜表面时,发现通量值控制着银的溅射和溅射再沉积的竞争。结果,较低的辐照通量有利于锥状纳米结构的形成,而高通量值则显示出主导的溅射作用。通过傅里叶变换红外光谱和卢瑟福背散射光谱研究了表面特征的通量依赖性修饰。给出了潜在机制的理论依据以证明实验结果。