Matches in SemOpenAlex for { <https://semopenalex.org/work/W2016564593> ?p ?o ?g. }
- W2016564593 endingPage "761" @default.
- W2016564593 startingPage "755" @default.
- W2016564593 abstract "In this paper, the frequency dependence of dielectric and electric modulus as well as morphological characteristics of poly (ɛ-caprolactone) (PCL)-ammonium thiocyanate (NH4SCN) polymer electrolyte are investigated. Dielectric analysis shows that electrode polarization masks the dielectric relaxation. The loss tangent peak shifts towards higher frequency with increasing salt content up to 26 wt-%. Long range conductivity relaxation is indicated as a resonance peak in imaginary electric modulus, M″ versus frequency plot. The normalised peaks of M″ and Z″ (imaginary impedance) with log f is observed to overlap. This implies that the relatively fast segmental motion of the polymer couples with ion diffusion. Hence, transport is enhanced at room temperature, which is much higher than the glass transition temperature of PCL (−60 °C). From morphology studies, the number of spherulites are observed to increase with a reduction in their size when more salt is added to PCL. This observation is accompanied by an enhancement in conductivity and increase in the amorphous phase. When 32 wt-% of salt is added, agglomeration appears due to the formation of ion clusters or higher aggregates as deduced from SEM micrographs." @default.
- W2016564593 created "2016-06-24" @default.
- W2016564593 creator A5040371630 @default.
- W2016564593 creator A5058967210 @default.
- W2016564593 creator A5080886663 @default.
- W2016564593 date "2012-06-01" @default.
- W2016564593 modified "2023-10-18" @default.
- W2016564593 title "Dielectric properties and morphology of polymer electrolyte based on poly(ɛ-caprolactone) and ammonium thiocyanate" @default.
- W2016564593 cites W1507281218 @default.
- W2016564593 cites W1963734871 @default.
- W2016564593 cites W1965010834 @default.
- W2016564593 cites W1965776589 @default.
- W2016564593 cites W1966453482 @default.
- W2016564593 cites W1972006250 @default.
- W2016564593 cites W1972060788 @default.
- W2016564593 cites W1972894094 @default.
- W2016564593 cites W1973362576 @default.
- W2016564593 cites W1982865369 @default.
- W2016564593 cites W1990215494 @default.
- W2016564593 cites W1990912241 @default.
- W2016564593 cites W1991995922 @default.
- W2016564593 cites W1999507018 @default.
- W2016564593 cites W2002388213 @default.
- W2016564593 cites W2005352626 @default.
- W2016564593 cites W2007712882 @default.
- W2016564593 cites W2014414717 @default.
- W2016564593 cites W2015171039 @default.
- W2016564593 cites W2015742605 @default.
- W2016564593 cites W2022900174 @default.
- W2016564593 cites W2024816473 @default.
- W2016564593 cites W2032565116 @default.
- W2016564593 cites W2033092696 @default.
- W2016564593 cites W2033985788 @default.
- W2016564593 cites W2034307522 @default.
- W2016564593 cites W2040927429 @default.
- W2016564593 cites W2041650421 @default.
- W2016564593 cites W2045092846 @default.
- W2016564593 cites W2052815875 @default.
- W2016564593 cites W2053717347 @default.
- W2016564593 cites W2064508653 @default.
- W2016564593 cites W2065818125 @default.
- W2016564593 cites W2069843129 @default.
- W2016564593 cites W2074276410 @default.
- W2016564593 cites W2077524818 @default.
- W2016564593 cites W2078544863 @default.
- W2016564593 cites W2079673939 @default.
- W2016564593 cites W2081736002 @default.
- W2016564593 cites W2087397544 @default.
- W2016564593 cites W2089679123 @default.
- W2016564593 cites W2091460456 @default.
- W2016564593 cites W2092227202 @default.
- W2016564593 cites W2093772547 @default.
- W2016564593 cites W2111398990 @default.
- W2016564593 cites W2126211696 @default.
- W2016564593 cites W2145444165 @default.
- W2016564593 cites W2156264763 @default.
- W2016564593 cites W2162634879 @default.
- W2016564593 cites W217300392 @default.
- W2016564593 doi "https://doi.org/10.1016/j.matchemphys.2012.03.064" @default.
- W2016564593 hasPublicationYear "2012" @default.
- W2016564593 type Work @default.
- W2016564593 sameAs 2016564593 @default.
- W2016564593 citedByCount "146" @default.
- W2016564593 countsByYear W20165645932013 @default.
- W2016564593 countsByYear W20165645932014 @default.
- W2016564593 countsByYear W20165645932015 @default.
- W2016564593 countsByYear W20165645932016 @default.
- W2016564593 countsByYear W20165645932017 @default.
- W2016564593 countsByYear W20165645932018 @default.
- W2016564593 countsByYear W20165645932019 @default.
- W2016564593 countsByYear W20165645932020 @default.
- W2016564593 countsByYear W20165645932021 @default.
- W2016564593 countsByYear W20165645932022 @default.
- W2016564593 countsByYear W20165645932023 @default.
- W2016564593 crossrefType "journal-article" @default.
- W2016564593 hasAuthorship W2016564593A5040371630 @default.
- W2016564593 hasAuthorship W2016564593A5058967210 @default.
- W2016564593 hasAuthorship W2016564593A5080886663 @default.
- W2016564593 hasConcept C113196181 @default.
- W2016564593 hasConcept C122865956 @default.
- W2016564593 hasConcept C131540310 @default.
- W2016564593 hasConcept C133386390 @default.
- W2016564593 hasConcept C147789679 @default.
- W2016564593 hasConcept C15744967 @default.
- W2016564593 hasConcept C159985019 @default.
- W2016564593 hasConcept C17525397 @default.
- W2016564593 hasConcept C178790620 @default.
- W2016564593 hasConcept C185592680 @default.
- W2016564593 hasConcept C188027245 @default.
- W2016564593 hasConcept C192562407 @default.
- W2016564593 hasConcept C2776029896 @default.
- W2016564593 hasConcept C49040817 @default.
- W2016564593 hasConcept C521977710 @default.
- W2016564593 hasConcept C56052488 @default.
- W2016564593 hasConcept C68801617 @default.
- W2016564593 hasConcept C77805123 @default.
- W2016564593 hasConcept C8010536 @default.
- W2016564593 hasConcept C91066073 @default.