2 research outputs found
Conèixer el CRAI Biblioteca del Campus de Mundet [text]. Curs 2021-22
Podeu consultar les versions anteriors a: http://hdl.handle.net/2445/101481Podeu consultar la versió en castellà a: http://hdl.handle.net/2445/124838Podeu consultar la versió en anglès a: http://hdl.handle.net/2445/12496
Quantum Chemical Approach in the Description of the Amphiphile Clusterization at the Air/Liquid and Liquid/Liquid Interfaces with Phase Nature Accounting. I. Aliphatic Normal Alcohols at the Air/Water Interface
A new
model based on the quantum chemical approach is proposed
to describe structural and thermodynamic parameters of clusterization
for substituted alkanes at the air/liquid and liquid/liquid interfaces.
The new model by the authors, unlike the previous one, proposes an
explicit account of the liquid phase (phases) influence on the parameters
of monomers, clusters and monolayers of substituted alkanes at the
regarded interface. The calculations were carried out in the frameworks
of the quantum chemical semiempirical PM3 method (Mopac 2012), using
the COSMO procedure. The new model was tested in the calculations
of the clusterization parameters of fatty alcohols under the standard
conditions at the air/water interface. The enthalpy, Gibbs’
energy and absolute entropy of formation for alcohol monomers alongside
with clusterization parameters for the cluster series including the
monolayer at air/water interface were calculated. In our calculations
the sinkage of monomers, molecules in clusters and monolayers was
varied from 1 up to 5 methylene groups. Thermodynamic parameters calculated
using the proposed model for the alcohol monolayers are in a good
agreement with the corresponding experimental data. However, the proposed model cannot define the most energetically
preferable immersion of the monolayer molecules in the water phase