Electron collisions with the HCOOH...(H2O)n (n=1, 2 and 3) complexes in liquid phase: the influence on the π* shape resonance of formic acid


Autoria(s): Freitas, Thiago Correa; Lima, Marco Aurelio Pinheiro; Coutinho, Kaline Rabelo; Varella, Marcio Teixeira do Nascimento; Canuto, Sylvio Roberto Accioly; Bettega, Marcio Henrique Franco
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

13/12/2013

13/12/2013

13/05/2013

Resumo

In this conference we report cross sections for elastic collisions of low-energy electrons with the HCOOH…(H2O)n complexes, with n = 1, 2 and 3. The scattering cross sections were computed with the Schwinger multichannel method [K. Takatsuka and V. McKoy, Phys. Rev. A 24 , 2473 (1981); Phys. Rev. A 30 , 1734 (1984)] with pseudopotentials [M. H. F. Bettega, L. G. Ferreira, and M. A. P. Lima, Phys. Rev. A 47, 1111 (1993)] in the static-exchange and static-exchange plus polarization approximations, for energies from 0.5 eV to 6 eV. We considered some diÆerent hydrogen-bonded structures for the complexes that were generated with classical Monte Carlo simulations [K. Coutinho and S. Canuto, J. Chem. Phys. 113, 9132, (2000)]. The aim of this work is to investigate the effect of the surrounding water molecules on the π* shape resonance of the solute. Previous theoretical and experimental studies carried out in the gas phase reported a π* state for HCOOH at around 1.9 eV. For the n = 1 case and for all complexes, the stabilization of the resonance was observed (it appears at lower energy compared to the value obtained in the gas phase), as reported previously for the CH2O…H2O complexes [T. C. Freitas, M. A. P. Lima, S. Canuto, and M. H. F. Bettega, Phys. Rev. A 80, 062710 (2009)]. This result indicates that the presence of the solvent may affect the processes related to the π* state, such as the molecular dissociation by electron impact. For the n = 2 case we have observed both stabilization and destabilization of the π* resonance, that is associated with the hydrogen bond donor or acceptor role of the water molecules in the complexes. For the n = 3 case, preliminary static-exchange results show the stabilization of the π* state. We propose an explanation of the stabilization/destabilization of the π* state in terms of the polarization of the solute due to the surrounding water molecules and the net charge in the solute.

CNPq

FINEP

Identificador

XXXVI Encontro Nacional de Física da Matéria Condensada, Águas de Lindóia, Sociedade Brasileira de Física, MAI 2013.

http://www.producao.usp.br/handle/BDPI/43678

http://www.sbf1.sbfisica.org.br/eventos/enfmc/xxxvi/sys/resumos/R0175-1.pdf

Idioma(s)

por

Publicador

Sociedade Brasileira de Física

Águas de Lindóia

Relação

Encontro Nacional de Física da Matéria Condensada, XXXVI

Direitos

openAccess

FREITAS, T.C.

BETTEGA, M.H.F.

LIMA, M.A.P.

COUTINHO, K.

VARELLA, M.T.N.

CANUTO, S.

Palavras-Chave #Electron collisions #ELÉTRONS #COLISÕES
Tipo

conferenceObject

Poster / Painel