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The above mentioned features of the molecular structure specifies the behavior of solid polymers, which depending on temperature and mechanical loads can exist in two states – glassy and high-elastic.
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A straightforward circular regression method is proposed in order to extract rapidly the relevant parameters of the electrochemical behavior of solid polymer electrolytes through the analysis of their related impedance spectra.
A new group-contribution model based on the lattice model is developed to interpret phase behaviors of solid polymer electrolyte/salt systems on the nonrandom mixing effect.
A new group-contribution model based on the modified double-lattice theory with the free volume effect is developed and applied to describe phase-behaviors of solid polymer electrolyte/salt system with various pressures.
Further polymerization leads to the formation of solid polymer.
Improvement of solid polymer electrolytes conductivity can be achieved by the modification of polymer architecture and by using additives.
An important class of solid polymer electrolytes is based on poly alkyelne glycols).
A constitutive model is derived for the viscoplastic behavior of a solid polymer at three-dimensional cyclic deformations with small strains.
However, the measured peak strength at initial truss member buckling was well below the values predicted from inelastic buckling theory, which was attributed to imperfections in the structure and the nonlinear compressive behavior of the solid polymer.
SAS is therefore particularly valuable for studying the behavior of solid NPs with a polymer shell in biologically relevant solutions, where the solvent type and interaction with the polymer are known to strongly influence the conformation of the polymer shell.
Thermal behavior of polymers and polymer nano composites under nitrogen atmosphere was studied.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com