La@C82 as a spin-active filling of SWCNTs: ESR study of magnetic and photophysical properties

Electron microscopy (TEM) and electron spin resonance (ESR) were applied to characterize lanthanum metallofullerene (La@C82)-filled peapods. The peapods were prepared by encapsulation of La@C82 in SWCNTs, which were obtained by laser ablation technique in the presence of non-magnetic catalysts Pt :...

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Detalles Bibliográficos
Autores principales: Círić, L, Pierzchala, K, Sienkiewicz, A, Magrez, A, Náfrádi, B, Alexander, D, Warner, J, Shinohara, H, Ruemmeli, M, Pichler, T, Briggs, G, Forró, L
Formato: Journal article
Lenguaje:English
Publicado: 2008
Descripción
Sumario:Electron microscopy (TEM) and electron spin resonance (ESR) were applied to characterize lanthanum metallofullerene (La@C82)-filled peapods. The peapods were prepared by encapsulation of La@C82 in SWCNTs, which were obtained by laser ablation technique in the presence of non-magnetic catalysts Pt : Rh : Re. Empty fullerenes, C60, were used as separators for the spin-active La@C82. TEM analysis confirmed filling of peapods with both C60 and La@C82 molecules. ESR spectra acquired in the temperature range from 5 K to 295 K provided indirect evidence of encapsulation of the spin-active La@C82 in carbon nanotubes and pointed to marked differences in magnetic properties of peapods as a function of the relative concentration of La@C82. Preliminary ESR studies of the photo-physical properties of La@C82 in CS2 revealed that, under illumination with white light, La@C82 neither generated singlet oxygen nor was photoactive against a paramagnetic target, nitroxide radical (TEMPO). © 2008 Wiley-VCH Verlag GmbH and Co. KGaA.