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脂肪酶催化 d-/l-天冬氨酸和二醇的选择性聚合制备螺旋手性聚酯中的基质工程。

Substrate Engineering in Lipase-Catalyzed Selective Polymerization of d-/l-Aspartates and Diols to Prepare Helical Chiral Polyester.

机构信息

Department of Chemistry, Zhejiang University, Hangzhou 310027, People's Republic of China.

Jiyang College of Zhejiang A&F University, Zhuji 311800, People's Republic of China.

出版信息

Biomacromolecules. 2021 Feb 8;22(2):918-926. doi: 10.1021/acs.biomac.0c01605. Epub 2021 Jan 11.

Abstract

The synthesis of optically pure polymers is one of the most challenging tasks in polymer chemistry. Herein, Novozym 435 (Lipase B from , immobilized on Lewatit VP OC 1600)-catalyzed polycondensation between d-/l-aspartic acid (Asp) diester and diols for the preparation of helical chiral polyesters was reported. Compared with d-Asp diesters, the fast-reacting l-Asp diesters easily reacted with diols to provide a series of chiral polyesters containing -substitutional l-Asp repeating units. Besides amino acid configuration, -substituent side chains and the chain length of diols were also investigated and optimized. It was found that bulky acyl -substitutional groups like Boc and Cbz were more favorable for this polymerization than small ones probably due to competitively binding of these small acyl groups into the active site of Novozym 435. The highest molecular weight can reach up to 39.5 × 10 g/mol ( = 1.64). Moreover, the slow-reacting d-Asp diesters were also successfully polymerized by modifying the substrate structure to create a "nonchiral" condensation environment artificially. These enantiocomplementary chiral polyesters are thermally stable and have specific helical structures, which was confirmed by circular dichroism (CD) spectra, scanning electron microscope (SEM), and molecular calculation.

摘要

光学纯聚合物的合成是聚合化学中最具挑战性的任务之一。本文报道了 Novozym 435(固定在 Lewatit VP OC 1600 上的来源于 的脂肪酶 B)催化 d-/l-天冬氨酸(Asp)二酯和二醇之间的缩聚反应,以制备螺旋手性聚酯。与 d-Asp 二酯相比,快速反应的 l-Asp 二酯容易与二醇反应,提供了一系列含有 -取代 l-Asp 重复单元的手性聚酯。除了氨基酸构型外, -取代基侧链和二醇的链长也进行了研究和优化。结果发现,像 Boc 和 Cbz 这样的大体积酰基取代基比小体积酰基取代基更有利于聚合,这可能是由于这些小酰基竞争结合 Novozym 435 的活性位点。最高分子量可达 39.5 × 10 g/mol( = 1.64)。此外,通过修饰底物结构人为地创造“非手性”缩合环境,也成功地聚合了缓慢反应的 d-Asp 二酯。这些对映体互补的手性聚酯具有热稳定性和特定的螺旋结构,这通过圆二色(CD)光谱、扫描电子显微镜(SEM)和分子计算得到了证实。

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