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- W3033866404 endingPage "109810" @default.
- W3033866404 startingPage "109810" @default.
- W3033866404 abstract "The preparation of well-dispersed graphene/polymer nanocomposites is challenging due to the poor miscibility of graphene sheets in a polymer matrix. To enhance the interaction between both phases, graphene sheets can be decorated with polymer chains. Herein, different strategies to graft poly(methyl methacrylate) (PMMA) and poly(di(ethylene glycol) ethyl ether acrylate) (PDEGA) chains at various positions on graphene oxide and reduced graphene oxide (GO/rGO) sheets are compared. Chain attachment was achieved by “grafting-to” and “grafting-from” methods. Grafting-to was performed by classical copper (I)-catalyzed alkyne azide cycloaddition. Using a grafting-from approach, PMMA and PDEGA brushes were grown from GO and rGO sheets via surface-initiated photo-induced copper-mediated polymerization (SI-photoCMP). SI-photoCMP is a robust and efficient method that allows polymerizations to be carried out under mild conditions and with reduced catalyst concentration. Moreover, the successful implementation of SI-photoCMP in a continuous-flow set-up enables easy upscaling of the system and is, therefore, a more efficient and environmentally friendly process for GO/rGO surface modification. By using the grafting-to approach, the grafting density of PMMA (Mn = 2,600 g/mol) was one chain per 990 carbons of graphene. In contrast, longer PMMA chains (Mn = 40,300 g/mol) and higher grafting density were obtained via the grafting-from method (one PMMA chain per 140 carbons of graphene)." @default.
- W3033866404 created "2020-06-12" @default.
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- W3033866404 date "2020-07-01" @default.
- W3033866404 modified "2023-09-30" @default.
- W3033866404 title "Photo-induced copper-mediated (meth)acrylate polymerization towards graphene oxide and reduced graphene oxide modification" @default.
- W3033866404 cites W1535991112 @default.
- W3033866404 cites W1563055217 @default.
- W3033866404 cites W1954586779 @default.
- W3033866404 cites W1965032180 @default.
- W3033866404 cites W1969545892 @default.
- W3033866404 cites W1975224191 @default.
- W3033866404 cites W1976680262 @default.
- W3033866404 cites W1977672505 @default.
- W3033866404 cites W1980419364 @default.
- W3033866404 cites W1980636327 @default.
- W3033866404 cites W1980945815 @default.
- W3033866404 cites W1981316754 @default.
- W3033866404 cites W1997150472 @default.
- W3033866404 cites W1997467412 @default.
- W3033866404 cites W2006864131 @default.
- W3033866404 cites W2014482677 @default.
- W3033866404 cites W2021433653 @default.
- W3033866404 cites W2026358241 @default.
- W3033866404 cites W2030677057 @default.
- W3033866404 cites W2032705968 @default.
- W3033866404 cites W2032915942 @default.
- W3033866404 cites W2033218192 @default.
- W3033866404 cites W2040448211 @default.
- W3033866404 cites W2040693735 @default.
- W3033866404 cites W2041218941 @default.
- W3033866404 cites W2048046484 @default.
- W3033866404 cites W2051438422 @default.
- W3033866404 cites W2055055939 @default.
- W3033866404 cites W2055273961 @default.
- W3033866404 cites W2058122340 @default.
- W3033866404 cites W2062199824 @default.
- W3033866404 cites W2063478995 @default.
- W3033866404 cites W2071235759 @default.
- W3033866404 cites W2071785669 @default.
- W3033866404 cites W2075972713 @default.
- W3033866404 cites W2078022170 @default.
- W3033866404 cites W2078055327 @default.
- W3033866404 cites W2078119784 @default.
- W3033866404 cites W2081078095 @default.
- W3033866404 cites W2088312435 @default.
- W3033866404 cites W2090508094 @default.
- W3033866404 cites W2093300134 @default.
- W3033866404 cites W2094830528 @default.
- W3033866404 cites W2109807803 @default.
- W3033866404 cites W2111769894 @default.
- W3033866404 cites W2127825367 @default.
- W3033866404 cites W2135479172 @default.
- W3033866404 cites W2139792605 @default.
- W3033866404 cites W2144262119 @default.
- W3033866404 cites W2144323185 @default.
- W3033866404 cites W2149915226 @default.
- W3033866404 cites W2151693477 @default.
- W3033866404 cites W2153249890 @default.
- W3033866404 cites W2160060745 @default.
- W3033866404 cites W2181001240 @default.
- W3033866404 cites W2315174626 @default.
- W3033866404 cites W2320173287 @default.
- W3033866404 cites W2322345407 @default.
- W3033866404 cites W2329085673 @default.
- W3033866404 cites W2334944639 @default.
- W3033866404 cites W2419031138 @default.
- W3033866404 cites W2473432380 @default.
- W3033866404 cites W2485423312 @default.
- W3033866404 cites W2493291399 @default.
- W3033866404 cites W2508510124 @default.
- W3033866404 cites W2564518939 @default.
- W3033866404 cites W2582433498 @default.
- W3033866404 cites W2622919130 @default.
- W3033866404 cites W2757854207 @default.
- W3033866404 cites W2758218376 @default.
- W3033866404 cites W2787365273 @default.
- W3033866404 cites W2797778105 @default.
- W3033866404 cites W2800690578 @default.
- W3033866404 cites W2899261262 @default.
- W3033866404 cites W2902619424 @default.
- W3033866404 cites W2959312048 @default.
- W3033866404 cites W2985603120 @default.
- W3033866404 cites W4234754301 @default.
- W3033866404 cites W4361865244 @default.
- W3033866404 cites W920929437 @default.
- W3033866404 doi "https://doi.org/10.1016/j.eurpolymj.2020.109810" @default.
- W3033866404 hasPublicationYear "2020" @default.