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首页> 外文期刊>Biomacromolecules >Enzymatic Synthesis of a Bio-Based Copolyester from Poly(butylene succinate) and Poly((R)-3-hydroxybutyrate): Study of Reaction Parameters on the Transesterification Rate
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Enzymatic Synthesis of a Bio-Based Copolyester from Poly(butylene succinate) and Poly((R)-3-hydroxybutyrate): Study of Reaction Parameters on the Transesterification Rate

机译:聚丁二酸丁二酸酯和聚(R)-3-羟基丁酸酯酶促合成生物基共聚酯的研究:反应参数对酯交换率的研究

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The enzyme-catalyzed synthesis of fully bio-based poly(3-hydroxybutyrate-co-butylene succinate) (poly(HB-co-BS)) copolyesters is reported for the first time. Different Candida antarctica lipase B (CALB)-catalyzed copolyesters were produced in solution, via a one-step or a two-step process from 1,4-butanediol, diethyl succinate, and synthesized telechelic hydroxylated poly(3-hydroxybutyrate) oligomers (PHB-diol). The influence of the ester/hydroxyl functionality ratio, catalyst amount, PHB-diol oligomer chain length, hydroxybutyrate (HB) and butylene succinate (BS) contents, and the nature of the solvent were investigated. The two-step process allowed the synthesis of copolyesters of high molar masses (M-n, up to 18 000 g/mol), compared to the one-step process (M-n similar to 8000 g/mol), without thermal degradation. The highest molar masses were obtained with diphenyl ether as solvent, compared with dibenzyl ether or anisole. During the two-step process, the transesterification rate between the HB and BS segments (i) increased with increasing amount of catalyst and decreasing molar mass of the PHB-diol oligomer, (ii) decreased when anisole was used as the solvent, and (iii) was not influenced by the HB/BS ratio. Tendencies toward block or random macromolecular architectures were observed as a function of the reaction time, the PHB-diol oligomer chain length, and the chosen solvent. Immobilized CALB-catalyzed copolyesters were thermally stable up to 200 degrees C. The crystalline structure of the poly(HB-co-BS) copolyesters depended on the HB/BS ratio and the average sequence length of the segments. The crystalline content, T-m and T-c, decreased with increasing HB content and the randomness of the copolymer structure.
机译:首次报道了完全生物基的聚(3-羟基丁酸酯-共-丁二酸琥珀酸酯)(聚(HB-co-BS))共聚酯的酶催化合成。在溶液中,通过一步或两步方法,由1,4-丁二醇,琥珀酸二乙酯和合成的远螯羟基化聚(3-羟基丁酸酯)低聚物(PHB)制备了不同的念珠菌南极脂肪酶B(CALB)催化的共聚酯。 -二醇)。研究了酯/羟基官能度比,催化剂用量,PHB-二醇低聚物链长,羟基丁酸酯(HB)和丁二酸琥珀酸酯(BS)含量以及溶剂性质的影响。与一步法(M-n类似于8000 g / mol)相比,通过两步法可以合成高摩尔质量的共聚酯(M-n,最高18 000 g / mol)。与二苄基醚或苯甲醚相比,以二苯醚为溶剂可获得最高的摩尔质量。在两步过程中,HB和BS段之间的酯交换率(i)随着催化剂用量的增加和PHB-二醇低聚物摩尔质量的降低而增加;(ii)以苯甲醚为溶剂时降低;和( iii)不受HB / BS比的影响。观察到嵌段或无规大分子结构的趋势是反应时间,PHB-二醇低聚物链长和所选溶剂的函数。固定的CALB催化共聚酯在高达200摄氏度的温度下均具有热稳定性。聚(HB-co-BS)共聚酯的晶体结构取决于HB / BS比率和链段的平均序列长度。结晶含量T-m和T-c随着HB含量的增加和共聚物结构的无规性而降低。

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