Maddock Lewis C H, Morton Rebekka, Kennedy Alan R, Hevia Eva
Department für Chemie, Biochemie und Pharmazie, Universität Bern, Freiestrasse 3, 3012, Bern, Switzerland.
WestCHEM, Department of Pure and Applied Chemistry, University of Strathclyde, 295 Cathedral St, Glasgow, G1 1XL, UK.
Chemistry. 2021 Nov 2;27(61):15180-15186. doi: 10.1002/chem.202102328. Epub 2021 Sep 12.
Alkali-metal ferrates containing amide groups have emerged as regioselective bases capable of promoting Fe-H exchanges of aromatic substrates. Advancing this area of heterobimetallic chemistry, a new series of sodium ferrates is introduced incorporating the bulky arylsilyl amido ligand N(SiMe )(Dipp) (Dipp=2,6-iPr -C H ). Influenced by the large steric demands imposed by this amide, transamination of [NaFe(HMDS) ] (HMDS=N(SiMe ) ) with an excess of HN(SiMe )(Dipp) led to the isolation of heteroleptic [Na(HMDS) Fe{N(SiMe )Dipp}] (1) resulting from the exchange of just one HMDS group. An alternative co-complexation approach, combining the homometallic metal amides [NaN(SiMe )Dipp] and [Fe{N(SiMe )Dipp} ] induces lateral metallation of one Me arm from the SiMe group in the iron amide furnishing tetrameric [NaFe{N(SiCH Me )Dipp}{N(SiMe )Dipp}] (2). Reactivity studies support that this deprotonation is driven by the steric incompatibility of the single metal amides rather than the basic capability of the sodium reagent. Displaying synergistic reactivity, heteroleptic sodium ferrate 1 can selectively promote ferration of pentafluorobenzene using one of its HMDS arms to give heterotrileptic [Na{N(SiMe )Dipp}(HMDS)Fe(C F )] (4). Attempts to deprotonate less activated pyridine led to the isolation of NaHMDS and heteroleptic Fe(II) amide [(py)Fe{N(SiMe )Dipp}(HMDS)] (5), resulting from an alternative redistribution process which is favoured by the Lewis donor ability of this substrate.
含酰胺基的碱金属铁酸盐已成为能够促进芳族底物进行铁 - 氢交换的区域选择性碱。为推动这一异双金属化学领域的发展,引入了一系列新的铁酸钠,其中包含庞大的芳基硅基酰胺配体N(SiMe₂)(Dipp)(Dipp = 2,6 - iPr₂ - C₆H₃)。受该酰胺巨大空间需求的影响,[NaFe(HMDS)₄](HMDS = N(SiMe₂)₂)与过量的HN(SiMe₂)(Dipp)进行转氨反应,导致仅交换一个HMDS基团后分离出杂配体[Na(HMDS)₃Fe{N(SiMe₂)Dipp}](1)。另一种共络合方法是,将同金属金属酰胺[NaN(SiMe₂)Dipp]和[Fe{N(SiMe₂)Dipp}₃]结合,促使铁酰胺中SiMe₃基团的一个甲基臂发生侧向金属化,得到四聚体[NaFe{N(SiCH₂Me₂)Dipp}{N(SiMe₂)Dipp}](2)。反应性研究表明,这种去质子化是由单金属酰胺的空间不相容性而非钠试剂的碱性能力驱动的。杂配体铁酸钠1表现出协同反应性,它可以用其一个HMDS臂选择性地促进五氟苯的铁化反应,生成杂三齿配体[Na{N(SiMe₂)Dipp}(HMDS)Fe(C₆F₅)](