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Further polymerization leads to the formation of solid polymer.
An important class of solid polymer electrolytes is based on poly alkyelne glycols).
Improvement of solid polymer electrolytes conductivity can be achieved by the modification of polymer architecture and by using additives.
We performed systematic nanomechanical experiments on four distinct geometries of solid polymer and hollow ceramic (Al2O3) nanolattices.
This combination of properties makes them appealing starting points for the development of solid polymer electrolytes.
There, the pre-treatment consisted of dissolving 0.1 g of solid polymer with 30 mL of 0.1 N sodium chloride using a magnetic stirrer.
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The effect of viscoelastic relaxation of solid polymers on the flow of vicinal (adsorbed) fluid is considered at the mesoscale.
The micromechanical origin of size effects in elasticity of solid polymers is discussed in this article.
This chapter deals with the acoustic properties of solid polymers, which are important, both from a theoretical and from a practical point of view.
Nuclear magnetic resonance (NMR) is today one of the most important analytical tools for the detailed characterization of solid polymers at various length and time scales.
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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