Macromolecular engineering via ring-opening polymerization (1): L-lactide/trimethylene carbonate block copolymers as thermoplastic elastomers

被引:56
|
作者
Guerin, William [1 ]
Helou, Marion [1 ,2 ]
Carpentier, Jean-Francios [1 ]
Slawinski, Martine
Brusson, Jean-Michel
Guillaume, Sophie M. [1 ]
机构
[1] Univ Rennes 1, UMR CNRS 6226, Inst Sci Chim Rennes, F-35042 Rennes, France
[2] Total Petrochem Res Feluy, B-7181 Seneffe, Belgium
关键词
L-LACTIDE; TRIMETHYLENE-CARBONATE; CYCLIC CARBONATES; POLY(TRIMETHYLENE CARBONATE); 1,3-TRIMETHYLENE CARBONATE; EPSILON-CAPROLACTONE; TRIBLOCK COPOLYMERS; COMPLEXES; METAL; POLY(LACTIDE);
D O I
10.1039/c2py20859h
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
Poly(L-lactide) (PLLA) is often regarded as tough and brittle while poly(1,3-trimethylene carbonate) (PTMC) is rather considered as a rubbery polymer. In an effort to improve the mechanical properties - especially ductility - of PLLA and thus to widen its field of applications, PLLA-PTMC diblock and triblock copolymers were synthesized through the sequential copolymerization of both L-lactide (L-LA) and trimethylene carbonate (TMC) using several catalytic systems. This process can be effectively catalyzed by inherently different systems ranging from a simple basic organocatalyst such as an amine (i.e., 4-N, N-dimethylaminopyridine, DMAP) or a phosphazene (i.e., 2-tert-butylimino-2-diethylamino-1,3-dimethylperhydro- 1,3,2-diazaphosphorine, BEMP), a simple Lewis acidic metallic salt such as aluminum triflate, or a more sophisticated discrete metallo-organic complex derived from a biofriendly metal, namely the beta-diiminate zinc complex [(BDIiPr)Zn(N(SiMe3)(2))] (BDI = CH(CMeNC6H3-2,6-iPr(2))(2)), [(BDIiPr) Zn(N(SiMe3)(2))]. Well-defined diblock PLLA-b-PTMC, triblock PLLA-b-PTMC-b-PLLA and 3-arm star GLY(PTMC-b-PLLA)(3) copolymers with controlled molecular features, i.e. controlled functional end-groups and molar masses, rather narrow dispersity values, were thus prepared. The thermo-mechanical properties of the resulting copolymers revealed that a minimal block size of the PTMC and of the PLLA segments within the copolymer of M-n,M-PTMC = ca. 10 000 g mol(-1) and M-n,M-PLLA = ca. 23 000 g mol(-1) enables significant improvement of the elongation at break (epsilon(b)) of PLLA up to 328%, while maintaining the Young's modulus (E = 2781 MPa) close to that of PLLA (E = 3427 MPa).
引用
收藏
页码:1095 / 1106
页数:12
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