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作 者:Rui M.B.Carrilho Mario J.F.Calvete Gabor Mikle Laszlo Kollar Mariette M.Pereira
机构地区:[1]University of Coimbra,Coimbra Chemistry Centre,Department of Chemistry,Rua Larga,3004-535 Coimbra,Portugal [2]Department of General and Inorganic Chemistry and ELKH-PTE Research Groupfor Selective Chemical Syntheses,University of Pecs,Ifjusag utja 6,H-7624 Pecs,Hungary
出 处:《Chinese Journal of Chemistry》2024年第2期199-221,共23页中国化学(英文版)
基 金:Portuguese Agency for Scientific Research"Fundacao para a Ciencia e a Tecnologia"(FCT)and COMPETE2020-UE,for funding through projects UIDB/00070/2020,UIDP/00070/2020,UIDB/00313/2020,UIDP/00313/2020 and UIDB/00285/2020 to Coimbra Chemistry Centre(CQC);NKFIH for funding through project TKP2021-EGA-17.
摘 要:Carbon monoxide(CO)has become one of the most relevant and versatile renewable C1 building blocks for chemical synthesis,especially in the fine chemicals industry,due to the development of efficient and selective catalysts for its activation.In this review,we present a comprehensive critical analysis of the last 10 years literature on the use of CO as a renewable feedstock for fine chemicals production.The review is organized by type of catalytic reaction,namely alkene and alkyne carbonylation,hydroformylation,carbonylation of aryl halides,carbonylative cross-coupling and C-H carbonylation.Notable examples of the synthesis of relevant building blocks and/or known pharmaceuticals are highlighted.Emphasis is placed on examples of utilizing CO as the C1 building block in one or more catalytic steps.The catalyst used and the reaction conditions are consistently presented throughout all of the examples.
关 键 词:Carbon monoxide Fine chemicals CARBONYLATION HYDROFORMYLATION C-H functionalization
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