Qiao Chang, Shi Wangyu, Brandolese Arianna, Benet-Buchholz Jordi, Escudero-Adán Eduardo C, Kleij Arjan W
Institute of Chemical Research of Catalonia (ICIQ), the Barcelona Institute of Science and Technology, Av. Països Catalans 16, 43007, Tarragona, Spain.
Universitat Rovira i Virgili, C/Marcel ⋅ lí Domingo s/n, 43007, Tarragona, Spain.
Angew Chem Int Ed Engl. 2022 Jul 4;61(27):e202205053. doi: 10.1002/anie.202205053. Epub 2022 May 9.
A new catalytic route has been developed for the coupling of epoxides and CO affording polymerizable six-membered bicyclic carbonates. Cyclic epoxides equipped with a β-positioned OH group can be transformed into structurally diverse bicyclic cyclic carbonates in good yields and with high selectivity. Key to the chemo-selectivity is the difference between the reactivity of syn- and anti-configured epoxy alcohols, with the latter leading to six-membered ring carbonate formation in the presence of a binary Al aminotriphenolate complex/DIPEA catalyst. X-ray analyses show that the conversion of the syn-configured substrate evolves via a standard double inversion pathway providing a five-membered carbonate product, whereas the anti-isomer allows for activation of the oxirane unit of the substrate opposite to the pendent alcohol. The potential use of these bicyclic products is shown in ring-opening polymerization offering access to rigid polycarbonates with improved thermal resistance.
已开发出一种新的催化路线,用于环氧化合物与一氧化碳的偶联反应,生成可聚合的六元双环碳酸酯。带有β位羟基的环状环氧化合物能够以良好的产率和高选择性转化为结构多样的双环环状碳酸酯。化学选择性的关键在于顺式和反式构型的环氧醇反应活性的差异,在二元铝氨基三酚盐配合物/二异丙基乙胺(DIPEA)催化剂存在下,后者会生成六元环碳酸酯。X射线分析表明,顺式构型底物的转化通过标准的双反转途径进行,生成五元碳酸酯产物,而反式异构体则允许底物的环氧乙烷单元与侧链醇相对的位置被活化。这些双环产物在开环聚合中的潜在用途得以展现,可用于制备具有改善耐热性的刚性聚碳酸酯。