Title of article
Enthalpy relaxation and free volume changes in aged styrene copolymers containing a hydrogen bonding co-monomer
Author/Authors
E.-A. MCGONIGLE، نويسنده , , J. M. G. COWIE?، نويسنده , , V. ARRIGHI، نويسنده , , R. A. PETHRICK، نويسنده ,
Issue Information
دوهفته نامه با شماره پیاپی سال 2005
Pages
13
From page
1869
To page
1881
Abstract
Enthalpy relaxation of polystyrene (PS) and four modified polystyrene copolymers
containing co-monomers capable of forming hydrogen bonds of different strengths is
described. Values of enthalpy lost ( H(Ta, ta)) were calculated from experimental data
plotted against log (ta) and modelled using the Cowie-Ferguson (CF) semi-empirical model.
This gives a set of values for three adjustable parameters, H∞(Ta), log (tc) and β. Each of
the parameters defines the relaxation process, which was found to be sensitive to changes
in hydrogen bond strength. The introduction of hydrogen bonding causes a slower
relaxation compared with PS, with a greater overall enthalpy lost measured for the all the
copolymers except the styrene-co–4-hexafluoro-2-hydrox isopropyl styrene (SHFHS).
Interestingly, the free volume of this copolymer measured using Positron Annihilation
Lifetime Spectroscopy (PALS) was greater than that of PS. Furthermore, the SHFHS
copolymer had the lowest change in heat capacity ( Cp) of any of the systems on passing
through the glass transition, Tg. All experiments indicate that the enthalpy lost by the fully
relaxed glass ( H∞(Ta)) is less than the theoretical amount possible on reaching the state
defined by the equilibrium liquid enthalpy line ( Hmax(Ta)). The results are discussed with
reference to the strength of interaction and free volume.
C 2005 Springer Science + Business Media, Inc.
Journal title
Journal of Materials Science
Serial Year
2005
Journal title
Journal of Materials Science
Record number
829713
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