The local environment of Co2+ ions intercalated in vanadium oxide/hexadecylamine nanotubes


Autoria(s): Saleta, M. E.; Aurelio, G.; Bardelli, F.; Sanchez, R. D.; Malta, M.; Torresi, Roberto Manuel
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

06/11/2013

06/11/2013

2012

Resumo

Vanadium oxide nanotubes constitute promising materials for applications in nanoelectronics as cathode materials, in sensor technology and in catalysis. In this work we present a study on hybrid vanadium oxide/hexadecylamine multiwall nanotubes doped with Co ions using state of the art x-ray diffraction and absorption techniques, to address the issue of the dopant location within the nanotubes' structure. The x-ray absorption near-edge structure analysis shows that the Co ions in the nanotubes are in the 2+ oxidation state, while extended x-ray absorption fine structure spectroscopy reveals the local environment of the Co2+ ions. Results indicate that Co atoms are exchanged at the interface between the vanadium oxide's layers and the hexadecylamines, reducing the amount of amine chains and therefore the interlayer distance, but preserving the tubular shape. The findings in this work are important for describing Co2+ interaction with vanadium oxide nanotubes at the molecular level and will help to improve the understanding of their physicochemical behavior, which is desired in view of their promising applications.

ArgentinaItaly collaboration program

Argentina-Italy collaboration program

UN Cuyo [06/C324]

U.N. Cuyo

ANPCyT (Argentina)

ANPCyT (Argentina) [PICT2007-0832/PICT2011-0752]

Identificador

JOURNAL OF PHYSICS-CONDENSED MATTER, BRISTOL, v. 24, n. 43, pp. 4826-4834, OCT 31, 2012

0953-8984

http://www.producao.usp.br/handle/BDPI/42060

10.1088/0953-8984/24/43/435302

http://dx.doi.org/10.1088/0953-8984/24/43/435302

Idioma(s)

eng

Publicador

IOP PUBLISHING LTD

BRISTOL

Relação

JOURNAL OF PHYSICS-CONDENSED MATTER

Direitos

restrictedAccess

Copyright IOP PUBLISHING LTD

Palavras-Chave #GAS-SENSING PROPERTIES #OXIDE NANOTUBES #VOX NANOTUBES #OXIDATION #INSERTION #LITHIUM #PHYSICS, CONDENSED MATTER
Tipo

article

original article

publishedVersion