this study we examined the graft yield as a function of the polymerisation time and the oxidation degree of cellulose. The grafted polymer was characterised using several analytical techniques, DSC analysis, GPC analysis, viscosity, FTIR and C-13 CP-MAS. Information on the morphology of grafted chains with respect to the bulk cellulose was obtained, measuring the dynamic parameters in a careful C-13 CP- MAS NMR study. All proposed chemical reactions, if properly conducted, do not affect the crystallinity of cellulose and introduce only a very modest amount of oligomers, therefore they seem suitable for the consolidation and protection of precious cellulose based materials, which are of historical interest.

Physical-Chemical Characterization of Acrylic Polymers grafted on Cellulose

N Proietti;D Capitani;
2002

Abstract

this study we examined the graft yield as a function of the polymerisation time and the oxidation degree of cellulose. The grafted polymer was characterised using several analytical techniques, DSC analysis, GPC analysis, viscosity, FTIR and C-13 CP-MAS. Information on the morphology of grafted chains with respect to the bulk cellulose was obtained, measuring the dynamic parameters in a careful C-13 CP- MAS NMR study. All proposed chemical reactions, if properly conducted, do not affect the crystallinity of cellulose and introduce only a very modest amount of oligomers, therefore they seem suitable for the consolidation and protection of precious cellulose based materials, which are of historical interest.
2002
Istituto per i Sistemi Biologici - ISB (ex IMC)
Inglese
43
6183
6194
12
http://dx.doi.org/10.1016/S0032-3861(02)00533-5
Sì, ma tipo non specificato
grafting reaction
cellulose modification
acrylic grafting
7
info:eu-repo/semantics/article
262
Margutti, S; Vicini, S; Proietti, N; Capitani, D; Conio, G; Pedemonte, E; Segre, Al
01 Contributo su Rivista::01.01 Articolo in rivista
none
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/116947
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