The study of carbon nanomaterials by IR-Fourier spectroscopy, obtained by the action of an ultrasonic field on graphite

IF 0.3 Q4 PHYSICS, MULTIDISCIPLINARY
B. Baitimbetova, K.S. Tolubayev, Y. Ryabikin, D. Murzalinov, B. Zhautikov, G.S. Dairbekova
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引用次数: 0

Abstract

In this work, the absorption lines corresponding to nanomaterials (nanotubes, nanofibers, graphene), as well as vibrational spectra in the studied samples of graphene structures obtained by processing an ultrasonic field on an aromatic hydrocarbon and pure graphite, are studied by IR-Fourier spectroscopy. With an increase in time in the studied spectra of ultrasonic treatment on pure graphite, absorption bands are observed in the frequency range of ν= 2967,7 cm-1, 2926,1 cm-1, 2853 cm-1, 1449 cm-1, related to stretching and deformation vibrations of the bond C-H of saturated aromatic hydrocarbons. The spectra of carbonyl (carbon) compounds of the C-C bond are also noted in the regions of the absorption bands: 1449,9 cm-1÷1652,6 cm-1. This means that in the IR spectra, with an increase in the time of sonication, the carbon formations of asymmetric stretching vibrations of C-C bonds increase. In these frequency ranges, the absorption bands corresponding to adsorbed benzene are not observed. With an increase in the processing time of the samples, the absorption band of OH hydroxyl groups is not observed. In the samples under study, numerous aromatic carbon-carbon bonds are observed, due to the collective groups of vibrations of carbon nanomaterials (graphene structures, nanofibers, single-layer and multilayer carbon nanotubes, etc.).
碳纳米材料的红外傅立叶光谱研究,是通过超声波场作用于石墨而获得的
本文采用红外傅立叶光谱法研究了纳米材料(纳米管、纳米纤维、石墨烯)对应的吸收谱线,以及在芳香烃和纯石墨上处理超声场获得的石墨烯结构样品中的振动谱。随着超声处理纯石墨光谱时间的增加,在ν= 2967、7 cm-1、2926、1 cm-1、2853 cm-1、1449 cm-1的频率范围内观察到与饱和芳烃键C-H的拉伸和变形振动有关的吸收带。C-C键的羰基(碳)化合物的光谱也在吸收带1449,9 cm-1÷1652,6 cm-1区域被注意到。这意味着在红外光谱中,随着超声时间的增加,碳碳键不对称伸缩振动的碳形成增加。在这些频率范围内,未观察到与吸附苯相对应的吸收带。随着样品处理时间的增加,没有观察到OH -羟基的吸收带。在所研究的样品中,由于碳纳米材料(石墨烯结构,纳米纤维,单层和多层碳纳米管等)的集体振动,观察到许多芳香碳碳键。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
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32
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