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A cost-effective and facile approach for realization of black silicon nanostructures on flexible substrate

机译:在柔性基板上实现黑硅纳米结构的一种经济高效的方法

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摘要

In this paper, we report a cost effective and facile approach to produce uniform nanostructural black silicon over large-area by metal assist chemical etching followed by its transfer over pressure sensitive flexible substrate. Structural and optical properties of black silicon over flexible substrate were investigated. Field emission scanning electronic microscope (FESEM) reveals textured surface and dense morphology of silicon nanostructures; that appeared to be black. An intense and broadband UV and Visible photoluminescence spectra from these nanostructures was observed and suggested the optically active nature of black silicon. Broadening and asymmetric shifting of Raman line shape, corresponding to black silicon, confirmed quantum confinement of phonon. The crystal sizes of silicon (Si) nanostructures calculated using frequency shift in Raman spectra analytical model were 3.4 nm to 4.7 nm. Significant reduction of reflection below (1%) over the wide UV-Vis spectrum was recorded due to presence of textured surface as observed by FESEM. The present work aids our understanding of tuning the optical properties of black silicon and its' realization on flexible substrate could be beneficial for flexible electronics including bio-sensing and optoelectronics devices. More interestingly low reflectance of black silicon could pave the way for realization of highly efficient flexible solar cells.
机译:在本文中,我们报告了一种经济有效的方法,可通过金属辅助化学蚀刻,然后在压敏柔性基板上进行转移,在大面积上生产均匀的纳米结构黑硅。研究了柔性基板上黑硅的结构和光学性质。场发射扫描电子显微镜(FESEM)揭示了硅纳米结构的织构表面和致密形态。看起来是黑色的。观察到来自这些纳米结构的强烈的宽带紫外和可见光致发光光谱,并暗示了黑硅的光学活性。拉曼线形的增宽和不对称移动,对应于黑硅,证实了声子的量子约束。在拉曼光谱分析模型中使用频移计算的硅(Si)纳米结构的晶体尺寸为3.4 nm至4.7 nm。由于FESEM观察到,由于存在纹理化表面,因此在宽的UV-Vis光谱下记录的反射显着降低(1%)。本工作有助于我们理解调节黑硅的光学特性及其在柔性基板上的实现可能对包括生物传感和光电子设备在内的柔性电子器件有益。更有趣的是,黑硅的低反射率可为实现高效柔性太阳能电池铺平道路。

著录项

  • 来源
    《Journal of materials science》 |2019年第17期|16554-16561|共8页
  • 作者单位

    Cent Elect Engn Res Inst CSIR Nano Biosensors Grp Pilani 333031 Rajasthan India;

    Indian Inst Technol Indore Discipline Elect Engn MNRG Indore 453552 Madhya Pradesh 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
  • 关键词

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