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通过易得的左旋葡聚糖酮衍生单体的绿色聚合反应来合成可持续的超支化功能材料。

Sustainable Hyperbranched Functional Materials via Green Polymerization of Readily Accessible Levoglucosenone-Derived Monomers.

机构信息

URD Agro-Biotechnologies Industrielles (ABI), CEBB, AgroParisTech, 3, Rue des Rouges-Terres, Pomacle, 51110, France.

Department of Environmental Science, Informatics and Statistics, University Ca'Foscari of Venice, Via Torino155, Venezia Mestre, Venice, 30172, Italy.

出版信息

Macromol Rapid Commun. 2021 Oct;42(19):e2100284. doi: 10.1002/marc.202100284. Epub 2021 Aug 18.

DOI:10.1002/marc.202100284
PMID:34347323
Abstract

The homopolymerization in basic conditions of the recently reported bis(γ-lactone), 2H-HBO-HBO, is herein described for the first time. The solvent-free polymerization of this pentafunctional levoglucosenone (LGO) derivative affords fully renewable poly(vinyl-ether lactone) copolymers with a highly hyperbranched structure. This investigation stems from the polycondensation trials between 2H-HBO-HBO and di(methyl carbonate) isosorbide (DCI) that fails to give the anticipated polycarbonates. Such unexpected behavior is ascribed to the higher reactivity of the 2H-HBO-HBO hydroxy groups toward its α,β-conjugated endocyclic C═C, rather than the DCI methylcarbonate moieties. The different mechanistic scenarios involved in 2H-HBO-HBO homopolymerization are addressed and a possible structure of poly(2H-HBO-HBO) is suggested. Furthermore, the readily accessible (S)-γ-hydroxymethyl-α,β-butenolide (HBO) is also polymerized for the first time at a relatively large scale, without any prior modification, resulting in a new hyperbranched polymer with an environmental factor (E factor) ≈0. These new HBO-based polymers have a great potential for industrial-scale production due to their interesting properties and easy preparation via a low-cost, green, and efficient process.

摘要

本文首次报道了最近报道的双(γ-内酯),2H-HBO-HBO,在碱性条件下的均聚合。这种五官能基左旋葡庚酮(LGO)衍生物的无溶剂聚合可得到具有高度超支化结构的完全可再生的聚(乙烯基醚内酯)共聚物。这项研究源于 2H-HBO-HBO 和二(碳酸二甲酯)异山梨醇(DCI)之间的缩聚试验,该试验未能得到预期的聚碳酸酯。这种出乎意料的行为归因于 2H-HBO-HBO 羟基对其α,β-共轭内环 C═C 的反应性较高,而不是 DCI 碳酸二甲酯部分。本文讨论了涉及 2H-HBO-HBO 均聚合的不同机理情景,并提出了聚(2H-HBO-HBO)的可能结构。此外,还首次在相对较大的规模上,无需任何预先修饰,聚合了易得的(S)-γ-羟甲基-α,β-丁烯内酯(HBO),得到了一种具有环境因子(E 因子)≈0 的新型超支化聚合物。由于这些新的 HBO 基聚合物具有有趣的性质和通过低成本、绿色、高效的工艺制备的容易性,因此它们具有在工业规模生产的巨大潜力。

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