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- W2005197721 abstract "While the acidic polymer electrolyte membrane (PEM) Nafion® has garnered considerable attention, the active response of basic PEMs offers another realm of potential applications. For instance, the basic PEM Selemion® is currently being considered in the development of a CO2 separation prototype device to be employed in coal power plant flue gas. The mechanical integrity of this material and subsequent effects in active response in this harsh environment will become important in prototype development. A multiscale modeling approach based on rotational isomeric state theory in combination with a Monte Carlo methodology may be employed to study mechanical integrity. The approach has the potential to be adapted to address property change of any PEM in the presence of foreign species (reinforcing or poisoning), as well as temperature and hydration variations. The conformational characteristics of the Selemion® polymer chain and the cluster morphology in the polymer matrix are considered in the prediction of the stiffness of Selemion® in specific states." @default.
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- W2005197721 date "2008-03-27" @default.
- W2005197721 modified "2023-09-26" @default.
- W2005197721 title "Rotational isomeric state theory applied to the stiffness prediction of an anion polymer electrolyte membrane" @default.
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- W2005197721 doi "https://doi.org/10.1117/12.776303" @default.
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