The interaction of halogen molecules with SWNTs and graphene

Ghosh, Sandeep ; Sharma Yamijala, S. R. K. C. ; Pati, Swapan K. ; Rao, C. N. R. (2012) The interaction of halogen molecules with SWNTs and graphene RSC Advances, 2 (3). pp. 1181-1188. ISSN 2046-2069

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Official URL: http://pubs.rsc.org/en/content/articlelanding/2011...

Related URL: http://dx.doi.org/10.1039/C1RA00295C

Abstract

The interaction of halogen molecules of varying electron affinity, such as iodine monochloride (ICl), bromine (Br2), iodine monobromide (IBr) and iodine (I2) with single-walled carbon nanotubes (SWNTs) and graphene has been investigated in detail. Halogen doping of the two nanocarbons has been examined using Raman spectroscopy in conjunction with electronic absorption spectroscopy and extensive theoretical calculations. The halogen molecules, being electron withdrawing in nature, induce distinct changes in the electronic states of both the SWNTs and graphene, which manifests with a change in the spectroscopic signatures. Stiffening of the Raman G-bands of the nanocarbons upon treatment with the different halogen molecules and the emergence of new bands in the electronic absorption spectra, both point to the fact that the halogen molecules are involved in molecular charge-transfer with the nanocarbons. The experimental findings have been explained through density functional theory (DFT) calculations, which suggest that the extent of charge-transfer depends on the electron affinities of the different halogens, which determines the overall spectroscopic properties. The magnitude of the molecular charge-transfer between the halogens and the nanocarbons generally varies in the order ICl > Br2 > IBr > I2, which is consistent with the expected order of electron affinities.

Item Type:Article
Source:Copyright of this article belongs to Royal Society of Chemistry.
ID Code:93061
Deposited On:08 Jun 2012 09:03
Last Modified:08 Jun 2012 09:18

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