Organocatalytic Ring-Opening Polymerization of N-Acylated-1,4-oxazepan-7-ones Toward Well-Defined Poly(ester amide)s: Biodegradable Alternatives to Poly(2-oxazoline)s

被引:20
|
作者
Wang, Xin [1 ]
Hadjichristidis, Nikos [1 ]
机构
[1] KAUST, Polymer Synth Lab, KAUST Catalysis Ctr, Phys Sci & Engn Div, Thuwal 23955, Saudi Arabia
关键词
ALIPHATIC POLYESTERS; COMB POLYMERS; DEGRADATION; POLY(EPSILON-CAPROLACTONE); HYDROLYSIS; CHALLENGES; LIBRARY; WATER;
D O I
10.1021/acsmacrolett.0c00040
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 ; 080501 ; 081704 ;
摘要
We report a series of poly(ester amide)s (PEAs) synthesized by organocatalytic ring-opening polymerization (ROP) of N-acylated-1,4-oxazepan-7-one (OxP) monomers, produced from N-acylated-4-piperidones using the Baeyer-Villiger oxidation reaction. The ROP of OxPs, conducted in CH2Cl2 at room temperature with benzyl alcohol as initiator and TBD/TU (1,5,7-triazabicyclo[4.4.0]dec-5-ene/thiourea) as a binary organocatalytic system, revealed a controlled/living character. The thermodynamics of the ROP highly depends on the N-acylated substituent of monomers, with the wie following reactivity order: OxP(Ph) > OxP(Me) > Ox(Pr) > OxP(Bn). Based on NMR results, it seems that our system follows the hydrogen bonding bifunctional activation mechanism. All intermediates and final products were characterized by NMR, MALDI-TOF MS, SEC, and DSC techniques. All poly(N-acylated-1,4-oxazepan-7-one) (POxP) polymers are amorphous with different glass transition temperatures (T-g), depending on the N-acylated substituent (T-g: -2.90 to 43.75 degrees C). Among the synthesized polymers, only POxP(Me) was water-soluble and it degraded much faster than polycaprolactone in an aqueous phosphate buffer saline solution (pH = 7.4). Therefore, poly(N-acyiated-1,4-oxazepan-7-one)s are potential biodegradable alternatives to poly(2-oxazoline)s.
引用
收藏
页码:464 / 470
页数:7
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