Matches in SemOpenAlex for { <https://semopenalex.org/work/W2616507301> ?p ?o ?g. }
- W2616507301 endingPage "545" @default.
- W2616507301 startingPage "545" @default.
- W2616507301 abstract "The influence of the morphology of industrial graphite nanoplate (GNP) materials on their dispersion in polycarbonate (PC) is studied. Three GNP morphology types were identified, namely lamellar, fragmented or compact structure. The dispersion evolution of all GNP types in PC is similar with varying melt temperature, screw speed, or mixing time during melt mixing. Increased shear stress reduces the size of GNP primary structures, whereby the GNP aspect ratio decreases. A significant GNP exfoliation to individual or few graphene layers could not be achieved under the selected melt mixing conditions. The resulting GNP macrodispersion depends on the individual GNP morphology, particle sizes and bulk density and is clearly reflected in the composite’s electrical, thermal, mechanical, and gas barrier properties. Based on a comparison with carbon nanotubes (CNT) and carbon black (CB), CNT are recommended in regard to electrical conductivity, whereas, for thermal conductive or gas barrier application, GNP is preferred." @default.
- W2616507301 created "2017-05-26" @default.
- W2616507301 creator A5001841511 @default.
- W2616507301 creator A5009927602 @default.
- W2616507301 creator A5041886553 @default.
- W2616507301 creator A5044625387 @default.
- W2616507301 creator A5049904746 @default.
- W2616507301 creator A5088550850 @default.
- W2616507301 date "2017-05-18" @default.
- W2616507301 modified "2023-10-17" @default.
- W2616507301 title "Effect of Graphite Nanoplate Morphology on the Dispersion and Physical Properties of Polycarbonate Based Composites" @default.
- W2616507301 cites W1641593551 @default.
- W2616507301 cites W1894441121 @default.
- W2616507301 cites W1967437454 @default.
- W2616507301 cites W1968722067 @default.
- W2616507301 cites W1977493896 @default.
- W2616507301 cites W1986380846 @default.
- W2616507301 cites W1992361680 @default.
- W2616507301 cites W1995539756 @default.
- W2616507301 cites W1997014239 @default.
- W2616507301 cites W2013060429 @default.
- W2616507301 cites W2014902876 @default.
- W2616507301 cites W2023510764 @default.
- W2616507301 cites W2025707599 @default.
- W2616507301 cites W2040142942 @default.
- W2616507301 cites W2058665524 @default.
- W2616507301 cites W2058957873 @default.
- W2616507301 cites W2061475115 @default.
- W2616507301 cites W2065062234 @default.
- W2616507301 cites W2065494941 @default.
- W2616507301 cites W2072309488 @default.
- W2616507301 cites W2079626481 @default.
- W2616507301 cites W2099779584 @default.
- W2616507301 cites W2099829294 @default.
- W2616507301 cites W2100330088 @default.
- W2616507301 cites W2101300166 @default.
- W2616507301 cites W2112304948 @default.
- W2616507301 cites W2118986338 @default.
- W2616507301 cites W2119882629 @default.
- W2616507301 cites W2123830103 @default.
- W2616507301 cites W2125612486 @default.
- W2616507301 cites W2128654538 @default.
- W2616507301 cites W2131820133 @default.
- W2616507301 cites W2132384935 @default.
- W2616507301 cites W2137864233 @default.
- W2616507301 cites W2138592421 @default.
- W2616507301 cites W2144354258 @default.
- W2616507301 cites W2152076730 @default.
- W2616507301 cites W2156575365 @default.
- W2616507301 cites W2167317538 @default.
- W2616507301 cites W2168567216 @default.
- W2616507301 cites W2317934532 @default.
- W2616507301 cites W2546484916 @default.
- W2616507301 cites W2551319469 @default.
- W2616507301 cites W2551486106 @default.
- W2616507301 cites W2557982790 @default.
- W2616507301 cites W2964225117 @default.
- W2616507301 cites W3191424865 @default.
- W2616507301 cites W389458831 @default.
- W2616507301 cites W4229601930 @default.
- W2616507301 doi "https://doi.org/10.3390/ma10050545" @default.
- W2616507301 hasPubMedCentralId "https://www.ncbi.nlm.nih.gov/pmc/articles/5459028" @default.
- W2616507301 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/28772907" @default.
- W2616507301 hasPublicationYear "2017" @default.
- W2616507301 type Work @default.
- W2616507301 sameAs 2616507301 @default.
- W2616507301 citedByCount "27" @default.
- W2616507301 countsByYear W26165073012017 @default.
- W2616507301 countsByYear W26165073012018 @default.
- W2616507301 countsByYear W26165073012019 @default.
- W2616507301 countsByYear W26165073012020 @default.
- W2616507301 countsByYear W26165073012021 @default.
- W2616507301 countsByYear W26165073012022 @default.
- W2616507301 countsByYear W26165073012023 @default.
- W2616507301 crossrefType "journal-article" @default.
- W2616507301 hasAuthorship W2616507301A5001841511 @default.
- W2616507301 hasAuthorship W2616507301A5009927602 @default.
- W2616507301 hasAuthorship W2616507301A5041886553 @default.
- W2616507301 hasAuthorship W2616507301A5044625387 @default.
- W2616507301 hasAuthorship W2616507301A5049904746 @default.
- W2616507301 hasAuthorship W2616507301A5088550850 @default.
- W2616507301 hasBestOaLocation W26165073011 @default.
- W2616507301 hasConcept C104779481 @default.
- W2616507301 hasConcept C120665830 @default.
- W2616507301 hasConcept C121332964 @default.
- W2616507301 hasConcept C129162502 @default.
- W2616507301 hasConcept C129955480 @default.
- W2616507301 hasConcept C138777275 @default.
- W2616507301 hasConcept C159985019 @default.
- W2616507301 hasConcept C171250308 @default.
- W2616507301 hasConcept C176933379 @default.
- W2616507301 hasConcept C177562468 @default.
- W2616507301 hasConcept C192562407 @default.
- W2616507301 hasConcept C2776540798 @default.
- W2616507301 hasConcept C2779698641 @default.
- W2616507301 hasConcept C30080830 @default.
- W2616507301 hasConcept C44038986 @default.
- W2616507301 hasConcept C499950583 @default.