Matches in SemOpenAlex for { <https://semopenalex.org/work/W2135666985> ?p ?o ?g. }
- W2135666985 endingPage "4205" @default.
- W2135666985 startingPage "4205" @default.
- W2135666985 abstract "We study the mechanism of surface adsorption of organic dyes on graphene, and successive exfoliation in water of these dye-functionalized graphene sheets. A systematic, comparative study is performed on pyrenes functionalized with an increasing number of sulfonic groups. By combining experimental and modeling investigations, we find an unambiguous correlation between the graphene–dye interaction energy, the molecular structure and the amount of graphene flakes solubilized. The results obtained indicate that the molecular dipole is not important per se, but because it facilitates adsorption on graphene by a “sliding” mechanism of the molecule into the solvent layer, facilitating the lateral displacement of the water molecules collocated between the aromatic cores of the dye and graphene. While a large dipole and molecular asymmetry promote the adsorption of the molecule on graphene, the stability and pH response of the suspensions obtained depend on colloidal stabilization, with no significant influence of molecular charging and dipole." @default.
- W2135666985 created "2016-06-24" @default.
- W2135666985 creator A5020195463 @default.
- W2135666985 creator A5031126325 @default.
- W2135666985 creator A5043524818 @default.
- W2135666985 creator A5047476967 @default.
- W2135666985 creator A5050616633 @default.
- W2135666985 creator A5059445415 @default.
- W2135666985 creator A5060778690 @default.
- W2135666985 creator A5062207084 @default.
- W2135666985 creator A5069841884 @default.
- W2135666985 creator A5072682589 @default.
- W2135666985 creator A5076722107 @default.
- W2135666985 creator A5088293873 @default.
- W2135666985 date "2013-01-01" @default.
- W2135666985 modified "2023-09-25" @default.
- W2135666985 title "Nanoscale insight into the exfoliation mechanism of graphene with organic dyes: effect of charge, dipole and molecular structure" @default.
- W2135666985 cites W1968691608 @default.
- W2135666985 cites W1976470672 @default.
- W2135666985 cites W1979102251 @default.
- W2135666985 cites W1981736123 @default.
- W2135666985 cites W1985045189 @default.
- W2135666985 cites W1987907142 @default.
- W2135666985 cites W1990940711 @default.
- W2135666985 cites W1991794210 @default.
- W2135666985 cites W1994806603 @default.
- W2135666985 cites W1996929882 @default.
- W2135666985 cites W2002552626 @default.
- W2135666985 cites W2002554624 @default.
- W2135666985 cites W2010639876 @default.
- W2135666985 cites W2013221003 @default.
- W2135666985 cites W2020306845 @default.
- W2135666985 cites W2021399517 @default.
- W2135666985 cites W2023271753 @default.
- W2135666985 cites W2028772401 @default.
- W2135666985 cites W2031282918 @default.
- W2135666985 cites W2036531934 @default.
- W2135666985 cites W2042980871 @default.
- W2135666985 cites W2043557382 @default.
- W2135666985 cites W2044901804 @default.
- W2135666985 cites W2048807254 @default.
- W2135666985 cites W2049475242 @default.
- W2135666985 cites W2051039246 @default.
- W2135666985 cites W2051220295 @default.
- W2135666985 cites W2051381895 @default.
- W2135666985 cites W2052005018 @default.
- W2135666985 cites W2056815766 @default.
- W2135666985 cites W2057541154 @default.
- W2135666985 cites W2059013803 @default.
- W2135666985 cites W2069023648 @default.
- W2135666985 cites W2071511657 @default.
- W2135666985 cites W2073500340 @default.
- W2135666985 cites W2075954219 @default.
- W2135666985 cites W2081693079 @default.
- W2135666985 cites W2081943469 @default.
- W2135666985 cites W2086153894 @default.
- W2135666985 cites W2090670507 @default.
- W2135666985 cites W2098508266 @default.
- W2135666985 cites W2099761044 @default.
- W2135666985 cites W2102040878 @default.
- W2135666985 cites W2103945336 @default.
- W2135666985 cites W2108216630 @default.
- W2135666985 cites W2112154906 @default.
- W2135666985 cites W2116764827 @default.
- W2135666985 cites W2120626517 @default.
- W2135666985 cites W2120829540 @default.
- W2135666985 cites W2125612486 @default.
- W2135666985 cites W2128572087 @default.
- W2135666985 cites W2136763669 @default.
- W2135666985 cites W2142910748 @default.
- W2135666985 cites W2143981217 @default.
- W2135666985 cites W2171928137 @default.
- W2135666985 cites W2313257772 @default.
- W2135666985 cites W2317806057 @default.
- W2135666985 cites W2320289787 @default.
- W2135666985 cites W2322712178 @default.
- W2135666985 cites W2329037709 @default.
- W2135666985 cites W2330407276 @default.
- W2135666985 cites W2342863275 @default.
- W2135666985 cites W4237557276 @default.
- W2135666985 doi "https://doi.org/10.1039/c3nr00258f" @default.
- W2135666985 hasPubMedId "https://pubmed.ncbi.nlm.nih.gov/23467481" @default.
- W2135666985 hasPublicationYear "2013" @default.
- W2135666985 type Work @default.
- W2135666985 sameAs 2135666985 @default.
- W2135666985 citedByCount "111" @default.
- W2135666985 countsByYear W21356669852014 @default.
- W2135666985 countsByYear W21356669852015 @default.
- W2135666985 countsByYear W21356669852016 @default.
- W2135666985 countsByYear W21356669852017 @default.
- W2135666985 countsByYear W21356669852018 @default.
- W2135666985 countsByYear W21356669852019 @default.
- W2135666985 countsByYear W21356669852020 @default.
- W2135666985 countsByYear W21356669852021 @default.
- W2135666985 countsByYear W21356669852022 @default.
- W2135666985 countsByYear W21356669852023 @default.
- W2135666985 crossrefType "journal-article" @default.
- W2135666985 hasAuthorship W2135666985A5020195463 @default.