Engel Rebecca V, Alsaiari Raiedhah, Nowicka Ewa, Pattisson Samuel, Miedziak Peter J, Kondrat Simon A, Morgan David J, Hutchings Graham J
Cardiff Catalysis Institute, School of Chemistry, Cardiff University, Main Building, Park Place, Cardiff, CF10 3AT UK.
Top Catal. 2018;61(5):509-518. doi: 10.1007/s11244-018-0900-y. Epub 2018 Jan 30.
Cyclic carbonates are valuable chemicals for the chemical industry and thus, their efficient synthesis is essential. Commonly, cyclic carbonates are synthesised in a two-step process involving the epoxidation of an alkene and a subsequent carboxylation to the cyclic carbonate. To couple both steps into a direct oxidative carboxylation reaction would be desired from an economical view point since additional work-up procedures can be avoided. Furthermore, the efficient sequestration of CO, a major greenhouse gas, would also be highly desirable. In this work, the oxidative carboxylation of 1-decene is investigated using supported gold catalysts for the epoxidation step and tetrabutylammonium bromide in combination with zinc bromide for the cycloaddition of carbon dioxide in the second step. The compatibility of the catalysts for both steps is explored and a detailed study of catalyst deactivation using X-ray photoelectron spectroscopy and scanning electron microscopy is reported. Promising selectivity of the 1,2-decylene carbonate is observed using a one-pot two-step approach.
环状碳酸酯是化学工业中有价值的化学品,因此,其高效合成至关重要。通常,环状碳酸酯是通过两步法合成的,包括烯烃的环氧化以及随后向环状碳酸酯的羧化反应。从经济角度来看,将这两个步骤结合成直接氧化羧化反应是很有必要的,因为可以避免额外的后处理步骤。此外,有效封存主要温室气体二氧化碳也是非常可取的。在这项工作中,研究了使用负载型金催化剂进行第一步环氧化反应、四丁基溴化铵与溴化锌组合进行第二步二氧化碳环加成反应来实现1-癸烯的氧化羧化反应。探索了这两个步骤所用催化剂的兼容性,并报告了使用X射线光电子能谱和扫描电子显微镜对催化剂失活进行的详细研究。采用一锅两步法观察到了碳酸1,2-癸烯酯有良好的选择性。