Department of Chemistry, Missouri University of Science and Technology, Rolla, Missouri 65409, United States.
College of Chemistry, Beijing Normal University, Beijing 100875, People's Republic of China.
Inorg Chem. 2023 Jul 10;62(27):10743-10761. doi: 10.1021/acs.inorgchem.3c01209. Epub 2023 Jun 23.
The tripodal compounds (TMGtrphen)M-solv (M = Mn, Fe, Co; solv = MeCN, DMF) and bipodal analogues (TMGbiphen)M(NCMe) ( = 3 for Mn, Fe; = 2 for Co) and [(TMGbiphen)MCl] have been synthesized with ligands that feature a triaryl- or diarylmethyl-amine framework and superbasic tetramethylguanidinyl residues (TMG). The dicationic M(II) sites mediate catalytic nitrene-transfer reactions between the imidoiodinane PhI═NTs (Ts = tosyl) and a panel of styrenes in MeCN to afford aziridines and low yields of imidazolines (upon MeCN insertion) with an order of productivity that favors the bipodal over the tripodal reagents and a metal preference of Fe > Co ≥ Mn. In CHCl, the more acidic Fe(II) sites favor formation of 2,4-diaryl--tosylpyrrolidines by means of an in situ (3 + 2) cycloaddition of the initially generated 2-aryl--tosylaziridine with residual styrene. In the presence of ketone, 1,3-oxazolidines can be formed in practicable yields, involving a single-pot cycloaddition reaction of alkene, nitrene, and ketone (2 + 1 + 2). Mechanistic studies indicate that the most productive bipodal Fe(II) site mediates stepwise addition of nitrene to olefins to generate aziridines with good retention of stereochemistry and further enables aziridine ring opening to unmask a 1,3-zwitterion that can undergo cycloaddition with dipolarophiles (MeCN, alkene, ketone) to afford five-membered -heterocycles.
三齿配合物(TMGtrphen)M-solv(M=Mn、Fe、Co;solv=MeCN、DMF)和双齿类似物(TMGbiphen)M(NCMe)( = 3 对 Mn、Fe; = 2 对 Co)和[(TMGbiphen)MCl]已用配体合成,该配体具有三芳基-或二芳基-甲胺骨架和超碱性四甲基胍基残基(TMG)。二价 M(II)位点在 MeCN 中催化亚胺碘烷 PhI═NTs(Ts=tosyl)和一系列苯乙烯之间的亚氮转移反应,生成氮丙啶和低产率的咪唑啉(通过 MeCN 插入),产率顺序有利于双齿试剂优于三齿试剂,并且具有 Fe>Co≥Mn 的金属偏好。在 CHCl 中,更酸性的 Fe(II)位点有利于通过最初生成的 2-芳基--tosyl 氮丙啶与残留的苯乙烯之间的原位(3 + 2)环加成,形成 2,4-二芳基--tosyl 吡咯烷。在酮的存在下,1,3-恶唑烷可以以实用的产率形成,涉及烯烃、亚氮和酮的单锅环加成反应(2 + 1 + 2)。机理研究表明,最具生产力的双齿 Fe(II)位点介导亚氮逐步加成到烯烃上,以保留良好立体化学的氮丙啶,进一步使氮丙啶环开环以暴露 1,3-两性离子,该两性离子可与偶极体(MeCN、烯烃、酮)进行环加成,以提供五元-杂环。