碳纳米管
X射线光电子能谱
材料科学
石墨烯
碳纳米管的光学性质
结合能
单壁纳米管的选择化学
石墨
碳纤维
碳纳米管的潜在应用
电导率
拉曼光谱
杂质
碳纳米管的力学性能
氮气
分析化学(期刊)
纳米技术
纳米管
化学工程
化学
物理化学
复合材料
原子物理学
有机化学
工程类
物理
光学
复合数
作者
Sergey V. Bulyarskiy,Daria A. Bogdanova,Georgy G. Gusarov,Alexander V. Lakalin,Alexander A. Pavlov,R. M. Ryazanov
标识
DOI:10.1016/j.diamond.2020.108042
摘要
Nitrogen is an important impurity for doping carbon nanotubes (CNTs). It increases the conductivity of nanotubes, which is an important feature for field-effect transistors, emission and other nanoelectronic devices based on CNTs. In this work, we carried out a complex study of the behavior of nitrogen in nanotubes, its effect on their morphology, X-ray photoelectron spectroscopy (XPS) and Raman scattering spectra. The aim of the article is to determine the binding energies of various types of nitrogen distribution in the graphene lattice of carbon nanotubes. The goal was achieved by comparing the XPS spectra, differential gravimetric analysis, and quantum chemical calculations. It was found that a graphite-like state has the highest binding energy, which is energetically favorable during doping and creates donor centers for carbon nanotubes. Therefore, doping with nitrogen increases the conductivity of the nanotubes in most cases. • A complex study of N behavior in MWCNTs • Manifestation of lattice distortion in Raman spectra • A new method to determine the N concentration in CNTs • Quantum-chemical calculation of the binding energy for N in N-doped CNT • Thermodynamic parameters for N-doped CNT based on joint spectroscopic analysis
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