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January 1, 2008Journal of Materials Chemistry77 citations

Efficient photosensitized energy transfer and near-IR fluorescence from porphyrin–SWNT complexes

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JCJohn CaseySBSergei M. BachiloRWR. Bruce Weisman

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Abstract

Energy transfer from photoexcited porphyrin molecules to single-walled carbon nanotubes (SWNTs) has been experimentally detected for samples in aqueous Triton X-100 micellar suspensions. Addition of SWNTs to micelle-suspended porphyrin results in strong quenching of porphyrin fluorescence. Measurements of concentration-dependent quenching and spectra suggest that this process arises from formation of ground state non-covalent complexes between porphyrins and SWNTs. Optical excitation of the porphyrin generates characteristic near-IR emission from the SWNTs, indicating efficient energy transfer within the complexes. This energy transfer is deduced to occur through a Dexter-type electron exchange mechanism. Complexation of SWNTs with organic photosensitizers provides a novel way of uniformly exciting a wide range of nanotube structural species in polydisperse samples using only a single excitation wavelength.

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Cite This Study

Casey et al. (2008) studied this question.

synapsesocial.com/papers/6a85d492d44b4f6ab82dd6c4https://doi.org/10.1039/b716649d
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