Investigation of the electrical and electrochemical properties of nanocomposites from V2O5, polypyrrole, and polyaniline


Autoria(s): HUGUENIN, Fritz; TORRESI, Roberto M.
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

19/10/2012

19/10/2012

2008

Resumo

In this work, an investigation of the electrical and electrochemical properties responsible for the energy storage capability of nanocomposites has been carried out. We demonstrate that, in the case of the V2O5 xerogel and the nanocomposites polypyrrole (Ppy)/V2O5 and polyaniline (PANI)/V2O5, the quadratic logistic equation (QLE) can be used to fit the inverse of the resistance values as a function of the injected charge in non-steady-state conditions. This contributes to a phenomenological understanding of the lithium ion and electron transport. The departure of the experimental curve from the fitting observed for the V2O5 xerogel can be attributed to the trapping sites formed during the lithium electroinsertion, which was observed by electrochemical impedance spectroscopy. The amount of trapping sites was obtained on the basis of the QLE. Similar values used to fit the inverse of the resistance were also used to fit the absorbance changes, which is also associated with the small polaron hopping from the V(IV) to the V(V) sites. On the other hand, there was good agreement between the experimental and the theoretical data when the profile of the inverse of the resistance as a function of the amount of inserted lithium ions of the nanocomposites Ppy/V2O5 and PANI/ V2O5 was concerned. We suggest that the presence of the conducting polymers is responsible for the different electrical profile of the V2O5 xerogel compared with those of the nanocomposites. In the latter case, interactions between the lithium ions and oxygen atoms from V2O5 are shielded, thus decreasing the trapping effect of lithium ions in the V2O5 sites. The different values of the lithium ion diffusion coefficient into these intercalation materials are in agreement with this hypothesis.

Identificador

JOURNAL OF PHYSICAL CHEMISTRY C, v.112, n.6, p.2202-2209, 2008

1932-7447

http://producao.usp.br/handle/BDPI/20774

10.1021/jp0758622

http://dx.doi.org/10.1021/jp0758622

Idioma(s)

eng

Publicador

AMER CHEMICAL SOC

Relação

Journal of Physical Chemistry C

Direitos

restrictedAccess

Copyright AMER CHEMICAL SOC

Palavras-Chave #VANADIUM(V) OXIDE XEROGEL #BY-LAYER FILMS #LITHIUM INTERCALATION #MULTILAYER FILMS #HYBRID FILMS #LI INSERTION #PENTOXIDE #ELECTRODES #GELS #CONDUCTIVITY #Chemistry, Physical #Nanoscience & Nanotechnology #Materials Science, Multidisciplinary
Tipo

article

original article

publishedVersion