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手性分选的空单壁碳纳米管对映体与水填充单壁碳纳米管对映体之间荧光位移的高光谱检测。

Hyperspectral Detection of the Fluorescence Shift between Chirality-Sorted Empty and Water-Filled Single-Wall Carbon Nanotube Enantiomers.

作者信息

Erkens Maksiem, Wenseleers Wim, López Carrillo Miguel Ángel, Botka Bea, Zahiri Zohreh, Duque Juan G, Cambré Sofie

机构信息

Nanostructured and Organic Optical and Electronic Materials (NANOrOPT), Department of Physics, University of Antwerp, B-2610 Antwerp, Belgium.

Visionlab, Department of Physics, University of Antwerp, B-2610 Antwerp, Belgium.

出版信息

ACS Nano. 2024 Jun 4;18(22):14532-14545. doi: 10.1021/acsnano.4c02226. Epub 2024 May 17.

Abstract

Single-wall carbon nanotubes (SWCNTs) have extraordinary electronic and optical properties that depend strongly on their exact chiral structure and their interaction with their inner and outer environment. The fluorescence (PL) of semiconducting SWCNTs, for instance, will shift depending on the molecules with which the SWCNT's hollow core is filled. These interaction-induced shifts are challenging to resolve on the ensemble level in samples containing a mixture of different filling contents due to the relatively large inhomogeneous line width of the ensemble SWCNT PL compared to the size of these shifts. To circumvent this inhomogeneous broadening, single-tube spectroscopy and hyperspectral imaging are often applied, which until now required time-consuming statistical studies. Here, we present hyperspectral PL microscopy combined with automated SWCNT segmenting based on either principal component analysis or a convolutional neural network, capable of both spatially and spectrally resolving the PL along the length of many individual SWCNTs at the same time and automatically fitting peak positions and line widths of individual SWCNTs. The methodology is demonstrated by accurately determining the emission shifts and line widths of thousands of left- and right-handed empty and water-filled SWCNTs coated with a chiral surfactant, resulting in four statistical distributions which cannot be resolved in ensemble spectroscopy of unsorted samples. The results demonstrate a robust method to quickly probe ensemble properties with single-enantiomer spectral resolution. Moreover, it promises to be an absolute quantitative method to characterize the relative abundances of SWCNTs with different handedness or filling content in macroscopic samples, simply by counting individual species.

摘要

单壁碳纳米管(SWCNTs)具有非凡的电子和光学特性,这些特性强烈依赖于其精确的手性结构以及与内外部环境的相互作用。例如,半导体单壁碳纳米管的荧光(PL)会根据填充其空心核心的分子而发生偏移。由于与这些偏移的大小相比,集合单壁碳纳米管PL的非均匀线宽相对较大,在包含不同填充内容物混合物的样品中,要在集合水平上解析这些相互作用引起的偏移具有挑战性。为了规避这种非均匀展宽,常应用单管光谱学和高光谱成像技术,而到目前为止,这需要耗时的统计研究。在这里,我们展示了结合基于主成分分析或卷积神经网络的自动单壁碳纳米管分割的高光谱PL显微镜技术,它能够同时在空间和光谱上沿着许多单个单壁碳纳米管的长度解析PL,并自动拟合单个单壁碳纳米管的峰值位置和线宽。通过准确确定数千个涂有手性表面活性剂的左旋和右旋空管及充水管状单壁碳纳米管的发射偏移和线宽,证明了该方法的有效性,得到了四个在未分类样品的集合光谱中无法解析的统计分布。结果展示了一种以单一对映体光谱分辨率快速探测集合特性的稳健方法。此外,它有望成为一种绝对定量的方法,通过简单地对单个物种进行计数,来表征宏观样品中不同手性或填充内容的单壁碳纳米管的相对丰度。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b3da/11155256/9de77a74a790/nn4c02226_0001.jpg

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