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The effect of ring size on the selective carboxylation of cycloalkene oxides

机译:戒指大小选择性的影响羧化作用的环烯氧化物

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Carbon dioxide utilisation technology can contribute to the reduction of atmospheric CO2 levels both through its sequestration from flue gases and indirectly by relieving pressure on conventional feedstocks in chemical manufacturing. A promising approach is to employ CO2 to produce valuable cyclic carbonates (CCs) in reaction with suitable epoxides. This also has the advantage that carbon dioxide replaces toxic and hazardous reactants such as phosgene. In earlier work we have investigated the synthesis of epoxides from cycloalkenes using supported gold and gold-palladium nanoparticles as catalysts and oxygen from air as the oxidant under solvent free conditions. A strong dependence of epoxide selectivity on ring size was observed with C5 < C6 < C7 << C8. In this study we extend this work to the investigation of cycloaddition of CO2 to different cycloalkene oxides with the ultimate aim of designing a process in which both epoxidation of an alkene and incorporation of CO2 could be achieved in a single process. However, we have found the opposite trend for the selectivity to carbonates: smaller ring cycloalkene oxides giving the highest carbonate selectivities while large rings do not yield CCs at all. The product distributions suggest that an alternative ring opening of the epoxides to yield alcohols and ketones is preferred under all the experimental conditions explored for larger ring systems. Additionally, the mechanism of the CC synthesis using a quaternary ammonium salt and ZnBr2 as the catalyst system was investigated using DFT methods. The results of the calculations support the experimental findings.
机译:二氧化碳利用技术有助于减少大气中的二氧化碳水平都通过其从烟道封存气体和间接的缓解压力传统的原料化学制造业。二氧化碳的产生有价值的循环碳酸盐(CCs)与合适的环氧化合物反应。二氧化碳取代有毒的优势和危险的反应物,如光气。之前我们已经调查了合成工作使用支持的环氧化合物环烯金和gold-palladium纳米颗粒催化剂和氧气从空气作为氧化剂在无溶剂条件下。依赖的环氧化物选择性环的大小观察了C5 < C6 < C7 < < C8。研究中我们扩展这项工作的调查对不同的环烯环加成作用的二氧化碳氧化物与设计的最终目的烯烃的环氧化反应的过程和公司的二氧化碳能够达到单的过程。相反的趋势碳酸盐的选择性:小戒指环烯氧化物给在大环碳酸酯选择性最大不屈服CCs。分布表明,另一个戒指的收益率醇,环氧化合物酮是首选在所有的实验更大的环系统的条件探索。此外,CC合成的机理使用季铵盐和摘要使用DFT催化剂体系研究方法。实验发现。

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