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Electronic structure of nitrogen-containing carbon nanotubes irradiated with argon ions: XPS and XANES studies

机译:用氩离子照射含氮碳纳米管的电子结构:XPS和Xanes研究

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Using the methods of X-ray photoelectron (XPS) and X-ray absorption near edge structure (XANES) spectroscopies with synchrotron radiation, data on changes in the electronic structure and chemical composition of nitrogen-containing multiwalled carbon nanotubes (N-MWCNTs) upon their exposure to the radiation of argon ions with an energy of 5 keV are obtained. It is found that the exposure leads to an increase in the degree of defectiveness of the N-MWCNTs structure and to the carbon oxidation with formation of various oxygen-containing groups (C-OH, C=O/COOH, C-O-C/O-C-O, and CO3). The presence of carbon-oxygen bonds on the surface of carbon nanotubes is associated with the formation of radiation defects. It is shown that an increase in the fraction of nitrogen atoms present in the substituting configuration in the N-MWCNTs wall structure due to the irradiation does not give rise to an increase in the density of the occupied states near the Fermi level against the background of an increase in the degree of structure defectiveness, carbon oxidation, and a decrease in the total nitrogen concentration. The obtained results show that the irradiation of N-MWCNTs with argon ions allows one to successfully functionalize their surface.
机译:使用X射线光电子和X射线吸收的方法与边缘结构(XANES)光谱附近,具有同步辐射,关于电子结构和含氮多壁碳纳米管(N-MWCNT)的化学成分的变化数据得到它们对具有5keV的能量的氩离子的辐射。发现暴露导致N-MWCNT结构的缺陷程度和碳氧化的增加,形成各种含氧基团(C-OH,C = O / COOH,COC / OCO和二氧化碳。碳纳米管表面上的碳 - 氧键与辐射缺陷的形成有关。结果表明,由于照射而在N-MWCNTS壁结构中取代构型中存在的氮原子部分的增加不会导致占领州靠近费米水平附近的占用状态的增加结构缺陷性,碳氧化程度,碳氧化和总氮浓度的降低增加。所得结果表明,具有氩离子的N-MWCNT的照射允许人们成功官能化它们的表面。

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