Novakovic Katarina, Bruk Lev, Temkin Oleg
School of Engineering, Newcastle University Newcastle upon Tyne NE1 7RU UK
MIREA-Russian Technological University (Lomonosov Institute of Fine Chemical Technologies) Moscow 119571 Russia.
RSC Adv. 2021 Jul 12;11(39):24336-24344. doi: 10.1039/d1ra03810a. eCollection 2021 Jul 6.
The paper looks back at three decades of oscillatory carbonylation reactions, summarises core findings and shares perspectives, with particular emphasis on applications. Oscillatory carbonylation reactions of alkynes display remarkable versatility in terms of substrates, catalysts and solvents. Furthermore, in addition to oscillations in pH and redox potential, these organic chemical oscillators can yield oscillations in turbidity and release heat from the reaction in a pulsatile manner. Recent research developments shift attention from small molecule substrates ( phenylacetylene) and small molecule catalysts ( palladium(ii) iodide), to oscillatory carbonylation reactions using polymeric substrates ( PEGylated alkynes) and polymeric catalysts ( imine-functionalized chitosan-palladium) and use of these polymeric building blocks to develop oscillatory (pulsatile) materials fit for pulsatile drug release and other applications.
本文回顾了三十年的振荡羰基化反应,总结了核心发现并分享了观点,特别强调了应用。炔烃的振荡羰基化反应在底物、催化剂和溶剂方面展现出显著的多功能性。此外,除了pH值和氧化还原电位的振荡外,这些有机化学振荡器还能产生浊度振荡,并以脉动方式从反应中释放热量。最近的研究进展将注意力从小分子底物(苯乙炔)和小分子催化剂(碘化钯(II)),转移到使用聚合物底物(聚乙二醇化炔烃)和聚合物催化剂(亚胺功能化壳聚糖-钯)的振荡羰基化反应,以及利用这些聚合物构建块开发适用于脉动药物释放和其他应用的振荡(脉动)材料。