2005
DOI: 10.1016/j.polymer.2005.03.074
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Solvent free vapour phase photografting of acrylamide onto poly(methyl methacrylate)

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Cited by 17 publications
(19 citation statements)
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“…5. The fittings of C1s and O1s (not shown) found two major bonds between carbon and oxygen such as C\O (287.607 eV) and O\C_O (533.094 eV) [22][23][24]. This finding confirms the previous analyses from FTIR where several vibrational modes of carbon-oxygen molecules are detected, i.e., C_O anti-symmetric/symmetric stretching modes, COO − anti-symmetric/ symmetric modes and C\O vibration mode in C\O\C.…”
Section: Surface Chemical Compositionmentioning
confidence: 99%
“…5. The fittings of C1s and O1s (not shown) found two major bonds between carbon and oxygen such as C\O (287.607 eV) and O\C_O (533.094 eV) [22][23][24]. This finding confirms the previous analyses from FTIR where several vibrational modes of carbon-oxygen molecules are detected, i.e., C_O anti-symmetric/symmetric stretching modes, COO − anti-symmetric/ symmetric modes and C\O vibration mode in C\O\C.…”
Section: Surface Chemical Compositionmentioning
confidence: 99%
“…The most commonly used photoinitiators for photografting are benzophenone (BP) and its derivatives. [7][8][9] However, most of them are water insoluble, and hence the photografting has to be performed in organic solvents or mixed solvents of water and organic solvent, which increase cost and induce environmental problems. Obviously, water-soluble photoinitiators are welcomed in the industrial applications of photografting.…”
Section: Introductionmentioning
confidence: 99%
“…The experimental setup is presented in Figure 9.4. The advantages of the vapor-phase photografting polymerizations lie in the relatively high efficiency due to the solvent-free polymerization with less homo-polymerization (Lei et al, 2000;Ulbricht et al, 1995;Wirsen et al, 2005Wirsen et al, , 2005a.…”
Section: Photo-grafting Polymerizations By Photo-initiatorsmentioning
confidence: 99%