首页> 外文会议>American Institute of Chemical Engineers Annual Meeting >Highly Selective Enzymatic Ring-Opening Polymerization: Syntheses and Characterizations of Thermoplastic Di-Block Co-Polyesters Containing Poly(R)-3-Hydroxybutyrate and Poly(ε-Caprolactone) Blocks^
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Highly Selective Enzymatic Ring-Opening Polymerization: Syntheses and Characterizations of Thermoplastic Di-Block Co-Polyesters Containing Poly(R)-3-Hydroxybutyrate and Poly(ε-Caprolactone) Blocks^

机译:高选择性酶开环聚合:含有聚(R)-3-羟基丁酸酯和聚(ε-己内酯)块的热塑性二嵌段共聚物的合成和表征^

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Enzymatic modification of a microbial polyester was achieved by the ring-opening polymerization of ε-caprolactone (CL) with low-molecular weight telechelic hydroxylated poly[(R)-3-hydroxybutyrate] (PHB-diol) as initiator and Novozym 435 (immobilized Candida antarctica Lipase B) as catalyst in anhydrous 1,4-dioxane or toluene. The ring-opening polymerization was investigated at different conditions with two different types of PHB-diols: PHB-diol(P) containing a primary OH and a secondary OH end groups; and PHB-diol(M) consisting of 91% PHB-diol(P) and 9% PHB-diol containing two secondary OH end groups. The reactions were followed by GPC analyses of the resulting polymers at different time points, and the optimal conditions were established to be 70°C at a weight ratio of CL/enzyme/solvent of 8:1:24. The ring-opening polymerization of CL with PHB-diol(M) (M_n of 2380, NMR) at the molar ratio of 50:1 under the optimal conditions in 1,4-dioxane gave the corresponding poly[HB(56wt%)-co-CL(44wt%)] with M_n (NMR) of 3900 in 66% yield. Polymerization of CL and PHB-diol(P) (M_n of 2010, NMR) at the same condition in toluene gave the corresponding poly[HB(28wt%)-co-CL(72wt%)] with M_n (NMR) of 7100 in 86% yield. Both polymers were characterized by ~1H- and ~(13)C-NMR and IR analyses as di-block co-polyesters containing a PHB block with a secondary OH end group and a poly(ε-caprolactone) (PCL) block with a primary OH end group. NMR analyses and control experiments suggested no formation of random co-polymers and no change of the PHB block during the reaction. The enzymatic ring-opening polymerization was selectively initiated by the primary OH group of PHB-diol, whereas the secondary OH group remained as an end group in the final polymers. The thermal properties of the di-block poly(HB-co-CL)s were analyzed by DSC, with excellent T_g values for the elastomer domain: poly[HB(56wt%)-co-CL(44wt%)] with M_n (NMR) of 3900 demonstrated a T_g of -57°C, T_m of 145, 123, and 53 °C; and poly[HB(28wt%)-co-CL(72wt%)] with M_n (NMR) of 7100 gave a T_g of -60°C, T_m of 147 and 50 °C. Thus, the selective enzymatic ring-opening polymerization with PHB-diol as macro-initiator provides a new method for the preparation of PHB-based block copolymers as biomaterials with good thermoplastic properties and novel structures containing functional end groups.^
机译:微生物聚酯的酶改性是通过(CL)ε己内酯的开环聚合用的低分子量羟基远螯聚[(R)-3-羟基丁](PHB二醇)作为引发剂和Novozym 435实现(固定南极假丝酵母脂肪酶B)的无水1,4-二恶烷或甲苯的催化剂。开环聚合在不同条件下进行了研究用两种不同类型的PHB二醇的:含有伯OH和仲OH端基PHB二醇(P);和PHB二醇(M),其由91%PHB二醇(P)和含有两个仲OH端基的9%PHB二醇。该反应,接着在不同的时间点所得到的聚合物的通过GPC分析,并建立了最佳条件为70℃,在CL的8 /酶/溶剂的重量比:1:24。在50摩尔比CL与PHB二醇(M)(2380 M_n,NMR)的开环聚合:1的最佳条件下,在1,4-二恶烷,得到相应的聚[HB(56重量%) - 共CL在产率66%的3900(44重量%)]与M_n(NMR)。为在甲苯中相同的条件下CL和PHB二醇(P)(2010年第M_n,NMR)的聚合,得到相应的聚[HB(28重量%) - CO-CL(72wt%)]在7100与M_n(NMR) 86%的收率。两种聚合物的特点是〜1H-和〜(13)C-NMR分析,IR分析为含有与仲OH端基和聚(ε己内酯)与(PCL)块中的PHB块二嵌段共聚酯伯OH端基。 NMR分析和控制实验表明没有形成无规共聚物的和在反应过程中没有PHB块的变化。酶开环聚合被选择性由伯羟基PHB二醇的发起,而仲羟基保持为在最终的聚合物的端基。所述二嵌段聚的热性质(HB-CO-CL)类是由DSC分析,与用于弹性体域优良T_G值:聚[HB(56重量%) - CO-CL(44重量%)]与M_n( 3900 NMR)证实的-57℃的T_G,145 T_m,123,和53℃;和聚[HB(28重量%) - CO-CL(72wt%)]与M_n(NMR)的7100,得到的-60℃的T_G,147和50℃的T_m。因此,利用PHB二醇作为大引发剂的选择性酶促开环聚合提供了基于PHB嵌段共聚物为具有良好的热塑性性质和含有官能端基的结构新颖的生物材料的制备的新方法。^

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