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A Comprehensive Study of Pristine and Calcined f-MWCNTs Functionalized by Nitrogen-Containing Functional Groups

A. Bajorek, B. Szostak, Mateusz Dulski, Jean−Marc Grenèche, Sabina Lewińska, B. Liszka, Mirosława Pawlyta, Anna Ślawska-Waniewska

2022Materials17 citationsDOIOpen Access PDF

Abstract

We present the study of pristine and calcined f-MWCNTs functionalized by nitrogen-containing functional groups. We focus on the structural and microstructural modification tuned by the previous annealing. However, our primary goal was to analyze the electronic structure and magnetic properties in relation to the structural properties using a multi-technique approach. The studies carried out by X-ray diffraction, XPS, and 57Fe Mössbauer spectrometry revealed the presence of γ-Fe nanoparticles, Fe3C, and α-FeOOH as catalyst residues. XPS analysis based on the deconvolution of core level lines confirmed the presence of various nitrogen-based functional groups due to the purification and functionalization process of the nanotubes. The annealing procedure leads to a structural modification mainly associated with removing surface impurities as purification residues. Magnetic studies confirmed a significant contribution of Fe3C as evidenced by a Curie temperature estimated at TC = 452 ± 15 K. A slight change in magnetic properties upon annealing was revealed. The detailed studies performed on nanotubes are extremely important for the further synthesis of composite materials based on f-MWCNTs.

Topics & Concepts

X-ray photoelectron spectroscopyCalcinationMaterials scienceAnnealing (glass)Surface modificationChemical engineeringNitrogenComposite numberNanoparticleCatalysisAnalytical Chemistry (journal)NanotechnologyComposite materialChemistryOrganic chemistryEngineeringBoron and Carbon Nanomaterials ResearchCarbon Nanotubes in CompositesDiamond and Carbon-based Materials Research
A Comprehensive Study of Pristine and Calcined f-MWCNTs Functionalized by Nitrogen-Containing Functional Groups | Litcius