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Particle agglomerated 3-d nanostructures for photon absorption.

机译:粒子团聚的3-d纳米结构,可吸收光子。

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摘要

The main objective of this thesis is to investigate the photon absorption properties of particle agglomerated 3-D structures that are synthesized through femtosecond laser ablation of solids. The size and morphology of these particle agglomerated 3-D structures, which can be tailored through adjusting laser parameters, determine the photon absorption property.;The effect of laser parameters on the formed ring size was studied. Based on the previous studies, a mechanism was proposed for the formation of ring nanoclusters. The laser pulse intensity dependent ponderomotive force was the key force to define the formation of ring nanoclusters. Then the effect of laser parameters on ring size was studied. Structures fabricated on several materials such as graphite, aluminosilicate ceramic, zinc ingot, gold, and titanium were analyzed to show the influence of material properties, laser parameters, and the environmental conditions on the size of ring formed.;The studies performed on the structures showed a minimum absorption of 0.75 A.U. in the bandwidth from UV to IR. The absorption spectrum is much wider compared to existing nanomaterials, such as silicon nanostructures and titanium dioxide nanostructures. To the best of the author's knowledge, it is a very competitive absorption rate when compared with the previous nanostructures used in photovoltaic conversion. Several features of nanostructures contribute to the enhancement of this light absorption. The special feature of the structure is that ease to fabricate and modify the properties by varying the laser parameters could make it competitive among other nanostructures available for solar cells.;A systematic theoretical and experimental study was performed to identify the effect of lasers on the size of the formed particles. The literature survey showed that the amount of supersaturation influences the growth rate as well as the nucleation rate of vapour condensed nanoparticles. Based on this theory, a mechanism was formed to explain the control of laser parameters over the size of formed particles. Further, a theoretical explanation was proposed from the experimental results for the transition of particle size distribution modals. These proposed mechanisms and explanations show the variation in particle size in the particle agglomerated 3-D nanostructures with laser parameters.
机译:本文的主要目的是研究通过飞秒激光烧蚀固体合成的粒子团聚3-D结构的光子吸收特性。这些颗粒团聚的3-D结构的尺寸和形态可以通过调整激光参数来调整,确定光子的吸收性能。研究了激光参数对形成的环尺寸的影响。在以前的研究的基础上,提出了形成环纳米团簇的机制。取决于激光脉冲强度的质动力是定义环纳米团簇形成的关键力。然后研究了激光参数对环尺寸的影响。分析了由多种材料制成的结构,例如石墨,铝硅酸盐陶瓷,锌锭,金和钛,以显示材料性能,激光参数和环境条件对形成的环的大小的影响。显示最小吸收为0.75 AU从紫外线到红外线的带宽。与现有的纳米材料(例如硅纳米结构和二氧化钛纳米结构)相比,吸收光谱要宽得多。据作者所知,与光伏转换中使用的先前纳米结构相比,它的吸收率极具竞争力。纳米结构的几个特征有助于这种光吸收的增强。该结构的特殊之处在于,通过改变激光参数易于制造和修改特性,使其在太阳能电池可用的其他纳米结构中具有竞争力。;进行了系统的理论和实验研究,以确定激光对尺寸的影响形成的颗粒。文献调查表明,过饱和量会影响蒸汽凝结纳米颗粒的生长速率以及成核速率。基于该理论,形成了一种机制来解释激光参数对所形成的颗粒大小的控制。此外,从实验结果中提出了关于粒径分布模态转变的理论解释。这些提出的机制和解释表明,在附聚的3-D纳米结构中,粒径随激光参数的变化而变化。

著录项

  • 作者

    Sivayoganathan, Mugunthan.;

  • 作者单位

    Ryerson University (Canada).;

  • 授予单位 Ryerson University (Canada).;
  • 学科 Engineering Aerospace.;Engineering General.;Nanotechnology.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 129 p.
  • 总页数 129
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:41:10

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