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首页> 外文期刊>Journal of Geophysical Research. Biogeosciences >Continuous wave laser for tailoring the photoluminescence of silicon nanoparticles produced by laser ablation in liquid
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Continuous wave laser for tailoring the photoluminescence of silicon nanoparticles produced by laser ablation in liquid

机译:用于根据液体激光烧蚀制备的硅纳米颗粒的光致发光的连续波激光

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摘要

Silicon nanoparticles (SiNPs) are attracting attention for applications in various fields, from energy storage to bio-imaging. One of their main advantages is good photoluminescence (PL) properties combined with the relatively high bio-compatibility. Here, we fabricated SiNPs by the laser ablation of silicon single crystal in de-ionized water, employing simultaneously the picosecond pulse laser (150 ps, 1064 nm, 7 mJ/pulse) and a continuous wave (CW) laser (532 nm, 270 mW). TEM analysis (bright field TEM, HRTEM, HAADF, EDS) clearly shows that the introduction of the CW laser significantly increases the crystallinity of the produced nanoparticles, which may be crucial for many optical and electronic applications. The obtained SiNPs exhibit good blue photoluminescence properties, and the introduction of the CW laser into the fabrication process leads to the considerable increases in the photoluminescence. Additionally, we conducted a detailed analysis on the aging-time dependence and the excitation wavelength-dependent PL. The results indicate that the blue photoluminescence may be ascribed to quantum confinement effect, interface related states, and defect in the O-containing layer (shell) of the nanoparticles. We demonstrate that the relative share of these mechanisms in overall PL is significantly affected by the introduction of the CW laser to the pulse laser ablation and it may improve the applicability of the Si nanoparticles produced to a wide variety of fields. Published by AIP Publishing.
机译:硅纳米颗粒(SiNPs)备受瞩目的在各个领域的应用,从能量储存于生物成像。他们的一个主要优点是良好的光致发光(PL)的属性与相对高的生物相容性组合。在这里,我们制造由硅单晶的在去离子水的激光烧蚀SiNPs,同时采用皮秒脉冲激光(150个PS,1064纳米,7兆焦耳/脉冲)和连续波(CW)激光器(532纳米,270毫瓦)。 TEM分析(明场TEM,HRTEM,HAADF,EDS)清楚地表明,导入的CW激光的显著增加所产生的纳米颗粒,其可以是用于许多光学和电子应用是至关重要的结晶度。将所得到的SiNPs表现出良好的蓝色发光性质,并引入CW激光的入制造工艺导致在光致发光的相当大的增加。此外,我们进行了老化时间依赖性和激发波长依赖性PL的详细分析。结果表明,该光致发光蓝色可能归因于纳米粒子的量子限制效应,接口相关的状态和缺陷的含O层(壳)。我们表明,在整体PL这些机制的相对份额显著通过导入CW激光到脉冲激光烧蚀的影响,并且它可以改善产生的广泛的领域的Si纳米颗粒的适用性。通过AIP发布发布。

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