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通过光致发光对零维到一维纳米结构尺寸的可视化与估算

Visualization and Estimation of 0D to 1D Nanostructure Size by Photoluminescence.

作者信息

Medvids Artūrs, Plūdons Artūrs, Vaitkevičius Augustas, Miasojedovas Saulius, Ščajev Patrik

机构信息

Insitute of Technical Physics, Riga Technical University, Paula Valdena 3/7, 1048 Riga, Latvia.

Institute of Photonics and Nanotechnology, Faculty of Physics, Vilnius University, Saulėtekio Ave. 3, 10257 Vilnius, Lithuania.

出版信息

Nanomaterials (Basel). 2024 Dec 12;14(24):1988. doi: 10.3390/nano14241988.

Abstract

We elaborate a method for determining the 0D-1D nanostructure size by photoluminescence (PL) emission spectrum dependence on the nanostructure dimensions. As observed, the high number of diamond-like carbon nanocones shows a strongly blue-shifted PL spectrum compared to the bulk material, allowing for the calculation of their top dimensions of 2.0 nm. For the second structure model, we used a sharp atomic force microscope (AFM) tip, which showed green emission localized on its top, as determined by confocal microscopy. Using the PL spectrum, the calculation allowed us to determine the tip size of 1.5 nm, which correlated well with the SEM measurements. The time-resolved PL measurements shed light on the recombination process, providing stretched-exponent decay with a = 1 ns lifetime, indicating a gradual decrease in exciton lifetime along the height of the cone from the base to the top due to surface and radiative recombination. Therefore, the proposed method provides a simple optical procedure for determining an AFM tip or other nanocone structure sharpness without the need for sample preparation and special expensive equipment.

摘要

我们阐述了一种通过光致发光(PL)发射光谱对纳米结构尺寸的依赖性来确定0D-1D纳米结构尺寸的方法。如观察到的,与块状材料相比,大量类金刚石碳纳米锥显示出强烈蓝移的PL光谱,从而可以计算出它们2.0纳米的顶部尺寸。对于第二种结构模型,我们使用了尖锐的原子力显微镜(AFM)探针,通过共聚焦显微镜确定,其顶部呈现绿色发射。利用PL光谱进行的计算使我们能够确定1.5纳米的探针尺寸,这与扫描电子显微镜(SEM)测量结果高度相关。时间分辨PL测量揭示了复合过程,提供了具有1纳秒寿命的拉伸指数衰减,表明由于表面和辐射复合,激子寿命从锥体底部到顶部沿锥体高度逐渐降低。因此,所提出的方法提供了一种简单的光学程序,无需样品制备和特殊昂贵设备即可确定AFM探针或其他纳米锥结构的尖锐度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4a90/11728706/852f00aeda85/nanomaterials-14-01988-g004.jpg

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