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聚酯加氢制聚醚多元醇。

Hydrogenation of Polyesters to Polyether Polyols.

机构信息

Leibniz Institut für Katalyse e. V. an der, Universität Rostock, Albert-Einstein-Strasse 29a, 18055, Rostock, Germany.

出版信息

ChemSusChem. 2019 Sep 6;12(17):4082-4087. doi: 10.1002/cssc.201901210. Epub 2019 Aug 8.

Abstract

The amount of plastic waste is continuously increasing. Besides conventional recycling, one solution to deal with this problem could be to use this waste as a resource for novel materials. In this study, polyesters are hydrogenated to give polyether polyols by using in situ-generated Ru-Triphos catalysts in combination with Lewis acids. The choice of Lewis acid and its concentration relative to the ruthenium catalyst are found to determine the selectivity of the reaction. Monitoring of the molecular weight during the reaction confirms a sequential mechanism in which the diols that are formed by hydrogenation are etherified to the polyethers. To probe the applicability of this tandem hydrogenation etherification approach, a range of polyester substrates is investigated. The oligoether products that form in these reactions have the chain lengths that are appropriate for application in the adhesives and coatings industries. This strategy makes polyether polyols accessible that are otherwise difficult to obtain from conventional fossil-based feedstocks.

摘要

塑料废物的数量正在不断增加。除了传统的回收利用,解决这个问题的一个方法可能是将这种废物用作新型材料的资源。在这项研究中,使用原位生成的 Ru-Triphos 催化剂与路易斯酸结合,将聚酯氢化以得到聚醚多元醇。路易斯酸的选择及其与钌催化剂的浓度比被发现决定了反应的选择性。反应过程中分子量的监测证实了一种顺序机制,其中氢化形成的二醇与聚醚醚化。为了探究这种串联氢化醚化方法的适用性,研究了一系列聚酯底物。在这些反应中形成的低聚醚产物具有适合应用于胶粘剂和涂料行业的链长。这种策略使得原本难以从传统化石原料中获得的聚醚多元醇变得易于获得。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ef7/6771520/fb63baca76be/CSSC-12-4082-g001.jpg

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