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