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Fitting Single-Walled Carbon Nanotube Optical Spectra

机译:拟合单壁碳纳米管光谱

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摘要

In this work, a comprehensive methodology for the fitting of single-walled carbon nanotube absorption spectra is presented. Different approaches to background subtraction, choice of line profile, and calculation of full width at half-maximum are discussed both in the context of previous literature and the contemporary understanding of carbon nanotube photophysics. The fitting is improved by the inclusion of exciton–phonon sidebands, and new techniques to improve the individualization of overlapped nanotube spectra by exploiting correlations between the first- and second-order optical transitions and the exciton–phonon sidebands are presented. Consideration of metallic nanotubes allows an analysis of the metallic/semiconducting content, and a process of constraining the fit of highly congested spectra of carbon nanotube solid films according to the spectral weights of each (n , m ) species in solution is also presented, allowing for more reliable resolution of overlapping peaks into single (n , m ) species contributions.
机译:在这项工作中,介绍了单壁碳纳米管吸收光谱配合的综合方法。在先前的文献的背景下,讨论了在先前文献的背景下的背景下减法,线轮廓的选择和整个宽度计算的不同方法以及对碳纳米管光学色血药物的当代理解。通过包含Exciton-Phonon边带,并通过利用第一和二阶光学转变和Zewiton-Phonon边带之间的相关性来改善改善重叠纳米管光谱的单独化的新技术。对金属纳米管的考虑允许分析金属/半导体含量,以及根据每个( N,

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