Title of article
In situ polyphenyl derivatisation and the effect of thermal decomposition of adsorbed and chemisorbed polyphenyls on the structure of multi-wall carbon nanotubes
Author/Authors
Andr?s Gergely، نويسنده , , K?lm?n ?jsz?szy، نويسنده , , Csaba Peltz، نويسنده , , Péter Kir?ly، نويسنده , , G?bor T?rk?nyi، نويسنده , , Judith Mih?ly، نويسنده , , Erika K?lm?n، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2011
Pages
8
From page
6212
To page
6219
Abstract
This study presents the exploitation of an alternative reaction route of deamination of arylamines to perform in situ derivatisation of multi-walled carbon nanotubes (MWCNTs) with polyphenyl (PPh) species of various masses. As a result of consecutive derivatisation, high conversion of PPh grafting of the MWCNTs was realised with the collateral outgrowth of physical modification with adsorbed additional PPhs. Applied derivatisation process exceeds the monolayer coverage related superficial saturation limitations in the overall grafting yield of the nanotubes. Thus, a linear relationship was recognized between the overall quantities of chemisorbed PPhs composed of D5-phenylene oligomers and the applied excess of diazonium activated reagents, corresponding to 2H MAS NMR spectroscopy results. According to mass spectrometry (MS) investigations, uniform thermal decomposition of the chemisorbed PPhs modified MWCNTs was found besides the more intense and altered decomposition characteristic-featured adsorbate-chemisorbate PPhs contained MWCNTs during sequential pyrolysis under inert atmosphere. This is attributed to the pyrolysis provoked isomerisation, decomposition and the formation of adsorbed and chemisorbed PPh moieties. As a result, a mediated and an even more pronounced degradation in the order of graphitic lattice of the MWCNTs were evidenced in the adsorbate-chemisorbate and the chemisorbate PPhs contained samples by FT-Raman spectroscopy and transmission electron microscopy (TEM), respectively. 2H MAS NMR supplied results of relevant amount of deuterium in the chemisorbate PPh contained sample without traces of aromatic related MS detected volatile products, these allow us to conclude about a thermally stable derivatisation that is interpreted as an endohedral modification of the nanotubes.
Keywords
MWCNTs , Sequential derivatisation , Thermal decomposition , Polyphenyls
Journal title
Applied Surface Science
Serial Year
2011
Journal title
Applied Surface Science
Record number
1014317
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