Ea. Nikitina et al., COMPUTATIONAL INVESTIGATION OF THE INFLUENCE OF THE ENVIRONMENT ON MECHANICAL-PROPERTIES OF SOLIDS, International journal of quantum chemistry, 1995, pp. 161-173
Using modified MNDO and AM1 semiempirical self-consistent-field molecu
lar orbital methods in the cluster approach, we investigated the envir
onmental influence on the mechanical properties of solids. The computa
tional approach of the chemical reaction coordinate was developed for
the study of mechanical deformation. The modeling of different types o
f deformation was considered. To test the validity of the method, we i
nvestigated the mechanical properties of simple hydrocarbon chains and
silica systems. Uniaxial deformation and bending were considered for
the heptane molecule. Verification of the mechanochemical calculations
for polypropylene was fulfilled by analyzing its vibrational spectra.
It was found that the influence of active medium particles (water, hy
droxonium ion, surfactant) may have caused a sharp decrease of the str
ength of silica and hydrocarbons. The atom-level mechanism and some qu
alitative characteristics of these processes were studied. (C) 1995 Jo
hn Wiley & Sons, Inc.