Atomistic Study of Water Confined in Silica.


Autoria(s): Almeida, James Moraes de; Miranda, Caetano Rodrigues; Silva, Antonio Jose Roque da; Scopel, Wanderlã L.; Fazzio, Adalberto
Contribuinte(s)

UNIVERSIDADE DE SÃO PAULO

Data(s)

24/04/2014

24/04/2014

13/05/2013

Resumo

In this work, we have used a combined of atomistic simulation methods to explore the effects of confinement of water molecules between silica surfaces. Firstly, the mechanical properties of water severe confined (~3A) between two silica alpha-quartz was determined based on first principles calculations within the density functional theory (DFT). Simulated annealing methods were employed due to the complex potential energry surface, and the difficulties to avoid local minima. Our results suggest that much of the stiffness of the material (46%) remains, even after the insertion of a water monolayer in the silica. Secondly, in order to access typical time scales for confined systems, classical molecular dynamics was used to determine the dynamical properties of water confined in silica cylindrical pores, with diameters varying from 10 to 40A. in this case we have varied the passivation of the silica surface, from 13% to 100% of SiOH, and the other terminations being SiOH2 and SiOH3, the distribution of the different terminations was obtained with a Monte Carlo simulation. The simulations indicates a lowering of the diffusion coefficientes as the diameter decreases, due to the structuration of hydrogen bonds of water molecules; we have also obtained the density profiles of the confined water and the interfacial tension.

Identificador

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

http://www.producao.usp.br/handle/BDPI/44632

http://www.sbf1.sbfisica.org.br/eventos/enfmc/xxxvi/sys/resumos/R0166-1.pdf

Idioma(s)

eng

Publicador

Sociedade Brasileira de Física

Águas de Lindóia

Relação

Encontro Nacional de Física da Matéria Condensada, XXXVI

Direitos

openAccess

James M. de Almeida

Palavras-Chave #Water molecules #Confined water #Atomistic simulation methods #Silica surfaces #Física da matéria condensada #Propriedades mecânicas
Tipo

conferenceObject

Resumo