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铜(三氮杂环卡宾)催化缩水甘油聚合以制备超低支化聚甘油。

Cu(triNHC)-catalyzed polymerization of glycidol to produce ultralow-branched polyglycerol.

作者信息

Sung Kihyuk, Baek Jinsu, Choi Soonyoung, Kim Byeong-Su, Lee Sang-Ho, Lee In-Hwan, Jang Hye-Young

机构信息

Department of Energy Systems Research, Ajou University Suwon 16499 Korea

Department of Chemistry, Yonsei University Seoul 03722 Korea.

出版信息

RSC Adv. 2023 Aug 11;13(34):24071-24076. doi: 10.1039/d3ra04422j. eCollection 2023 Aug 4.

Abstract

We have successfully synthesized a novel form of polyglycerol with an unprecedentedly low degree of branching (DB = 0.08-0.18), eliminating the need for glycidol protection. Leveraging the remarkable efficiency and selectivity of our Cu(triNHC) catalyst, comprising copper(i) ions and NHC ligands, we achieved a highly selective polymerization process. The proposed Cu-coordination mechanisms presented the formation of linear units while effectively suppressing dendritic units. Consequently, our pioneering approach yielded polyglycerol with an ultralow DB and exceptional yields. To comprehensively assess the physical properties and topology of the synthesized polyglycerol, we employed H diffusion-ordered spectroscopy, size-exclusion chromatography, and matrix-assisted laser desorption/ionization-time of flight spectrometry. Remarkably, the ultralow-branched cyclic polyglycerol (DB = 0.08) synthesized at 0 °C showcased extraordinary characteristics, exhibiting the lowest diffusion coefficient and the highest molecular weight. This achievement establishes the significant potential of our polyglycerol with a low degree of branching, revolutionizing the field of biocompatible polymers.

摘要

我们成功合成了一种新型聚甘油,其支化度极低(DB = 0.08 - 0.18),前所未有,无需缩水甘油保护。利用我们由铜(I)离子和NHC配体组成的Cu(triNHC)催化剂的卓越效率和选择性,我们实现了高度选择性的聚合过程。所提出的铜配位机制表明形成了线性单元,同时有效抑制了树枝状单元。因此,我们的开创性方法产生了具有超低支化度和优异产率的聚甘油。为了全面评估合成聚甘油的物理性质和拓扑结构,我们采用了氢扩散排序光谱法、尺寸排阻色谱法和基质辅助激光解吸/电离飞行时间光谱法。值得注意的是,在0°C下合成的超低支化环状聚甘油(DB = 0.08)展现出非凡特性,具有最低的扩散系数和最高的分子量。这一成果确立了我们低支化度聚甘油的巨大潜力,彻底改变了生物相容性聚合物领域。

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