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通过脂肪酶催化硒大环碳酸酯单体的开环聚合制备结构明确的含硒脂肪族聚碳酸酯

Well-Defined Selenium-Containing Aliphatic Polycarbonates via Lipase-Catalyzed Ring-Opening Polymerization of Selenic Macrocyclic Carbonate Monomer.

作者信息

Wei Chao, Xu Yue, Yan Bingkun, Hou Jiaqian, Du Zhengzhen, Lang Meidong

机构信息

Key Laboratory for Ultrafine Materials of Ministry of Education, School of Materials and Science and Engineering, East China University of Science and Technology, Shanghai, 200237, China.

出版信息

ACS Macro Lett. 2018 Mar 20;7(3):336-340. doi: 10.1021/acsmacrolett.8b00039. Epub 2018 Feb 22.

Abstract

The synthesis of well-defined, biodegradable selenium-containing polymers remains a formidable challenge in polymer chemistry. Herein, a selenic cyclic carbonate dimer monomer (M) was developed to generate well-defined, biodegradable aliphatic polycarbonates with selenide functionality on the backbone. The monomer was synthesized via the intermolecular cyclization of di(1-hydroxyethylene) selenide and diphenyl carbonate with lipase CA as catalysts in a mass of anhydrous toluene with very dilute monomer concentration. Then living ring-opening polymerization (ROP) was executed by solution method using the same lipase CA as catalysts. Similarly, the copolymerizations with commercial trimethylene carbonate (TMC) generated random copolymers demonstrated by C NMR, regulating the density of selenium functional groups. The resulting polymers exhibited a living polymerization characteristic, as evidenced by polymerization kinetics, predictable molecular weights, narrow molecular-weight distribution, and controlled copolymer compositions. Using hydrophilic macroinitiators (PEG), amphiphilic di/triblock copolymers could be obtained, suggesting their potential as controlled drug delivery system (DDS) and hydrogel scaffolds for tissue engineering.

摘要

在聚合物化学领域,合成结构明确、可生物降解的含硒聚合物仍然是一项艰巨的挑战。在此,我们开发了一种含硒环状碳酸酯二聚体单体(M),以制备主链带有硒化物官能团、结构明确且可生物降解的脂肪族聚碳酸酯。该单体是通过以脂肪酶CA为催化剂,在大量无水甲苯中,以极低的单体浓度,使二(1-羟基亚乙基)硒化物与碳酸二苯酯进行分子内环化反应合成的。然后,以同样的脂肪酶CA为催化剂,通过溶液法进行活性开环聚合(ROP)。同样地,与市售碳酸三亚甲基酯(TMC)的共聚反应生成了通过碳核磁共振(C NMR)证实的无规共聚物,从而调节了硒官能团的密度。所得聚合物表现出活性聚合特性,这通过聚合动力学、可预测的分子量、窄分子量分布以及可控的共聚物组成得到了证明。使用亲水性大分子引发剂(PEG),可以获得两亲性二/三嵌段共聚物,这表明它们在作为控释药物递送系统(DDS)和用于组织工程的水凝胶支架方面具有潜力。

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