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A Useful Synthetic Route to N-Nonsubstituted Succinimides via Light-Induced Degradation of Metallocarbonyl Complexes

作者
Aneta Kosińska,Sławomir Wojtulewski,Marcin Palusiak,Paweł Tokarz,Bogna Rudolf
出处
期刊:Organometallics [American Chemical Society]
卷期号:40 (6): 663-673 被引量:6
标识
DOI:10.1021/acs.organomet.0c00768
摘要

High Resolution Image Download MS PowerPoint Slide Succinimides are among the most studied compounds due to their wide profile of biological activities. It is well-known that succinimides undergo ring-opening reactions under alkaline conditions. This feature limits the formation of 3-substituted succinimides from maleimides by an oxa-Michael reaction, for which basic conditions are required. Herein, we report the synthesis, characterization, and crystal structure of metallocarbonyl (Fe, Ru) complexes bearing 3-substituted succinimide ligands. These complexes were obtained in oxa-Michael reactions of CpM(CO) 2 (η 1 -maleimidato) (M = Fe, Ru) with alcohols (MeOH, EtOH) in the presence of K 2 CO 3 . During the crystallographic studies of an iron complex bearing the 3-methoxysuccinimide ligand, we also identified unexpected crystals of free 3-methoxysuccinimide. We performed some additional experiments and theoretical calculations to determine the mechanism of formation of the obtained N -nonsubstituted succinimide. We demonstrate that 3-methoxysuccinimide resulted from light-induced degradation of CpFe(CO) 2 (η 1 -3-methoxysuccinimidato). On the basis of these findings, we propose an indirect route leading to 3-substituted succinimides starting from maleimide via the light-induced degradation of iron metallocarbonyl succinimidato complexes. The proposed methodology prevents ring opening of succinimide under alkaline conditions and gives N -nonsubstituted succinimide products. To confirm the effectiveness of the described method, CpFe(CO) 2 (η 1 -maleimidato) was allowed to react with several aliphatic alcohols and phenol, affording the oxa-Michael reaction products in the case of primary alcohols. The irradiation of the obtained compounds with daylight gave the N -nonsubstituted 3-alkoxysuccinimides.

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