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Synthesis of N,N-diethyldithiocarbamate functionalized 1,4-polyisoprene, from natural rubber and synthetic 1,4-polyisoprene
Authors:D. Derouet  Q.N. Tran  H. Ha Thuc
Affiliation:a L.C.O.M. Chimie des Polymères (UMR du CNRS UCO2M N°6011), Université du Maine, Faculté des Sciences, Avenue Olivier Messiaen, 72085 Le Mans Cedex 9, France
b Laboratoire des Polymères, Université des Sciences Naturelles d’Ho Chi Minh Ville, Département de Chimie-Physique, 227 rue Nguyen Van Cu, 5ème Arrondissement, Ho Chi Minh Ville, Viet Nam
Abstract:N,N-Diethyldithiocarbamate functionnalized 1,4-polyisoprenes were prepared from 1,4-polyisoprenes (natural or synthetic). The syntheses were performed by nucleophilic addition of N,N-diethyldithiocarbamate salts upon oxirane rings of epoxidized units according to a SN2 mechanism with ring opening. Studies on model molecules of epoxidized 1,4-polyisoprene units (1,2-epoxy-1-methylcyclohexane and 4,5-epoxy-4-methyloctane) were previously achieved to develop the procedure. The best yields were obtained at low temperature in polar medium, and more especially in water with sodium N,N-diethyldithiocarbamate (DEDT-Na) as reagent. A diastereospecific addition was noted when reaction was performed in water with DEDT-Na. Afterwards, the developed procedure was successfully generalized to epoxidized synthetic polyisoprenes and epoxidized natural rubber (in THF, then in latex medium). Excellent results were obtained in latex medium with epoxidized natural rubber (ENR) latices. As with the models, a diastereospecific addition of sodium N,N-diethyldithiocarbamate trihydrate onto epoxidized 1,4-polyisoprene units of ENR was observed at the condition to bring the latex medium to pH 8 before introduction of DEDT-Na. Influence of temperature, drc, and DEDT-Na concentration were successively examined to determine the best conditions of the addition on ENR latices.
Keywords:Iniferter   Natural rubber   Polyisoprene   Chemical modification   Latex   N,N-Diethyldithiocarbamate
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