Department of Organic Chemistry, Faculty of Chemistry , University of Lodz , Tamka 12 , 91-403 Łódź , Poland.
Theoretical and Structural Chemistry Group, Department of Physical Chemistry, Faculty of Chemistry , University of Lodz , Pomorska 163/165 , 90-236 Łódź , Poland.
J Org Chem. 2019 Sep 20;84(18):11425-11440. doi: 10.1021/acs.joc.9b01217. Epub 2019 Sep 10.
The reaction of 2-aryl-3-hydroxyisoindolin-1-ones with the -BuLi·TMEDA system in THF at -78 °C, affording a series of diastereomeric 3-aminoindan-1-ones via a novel rearrangement of the isoindolinone scaffold, is reported. It is proposed that α-elimination of LiOH from the transient -dilithiated hemiaminal carbenoids leads to the formation of singlet carbenes followed by their trapping via an intramolecular C-H insertion. An alternative explanation based on an intramolecular Mannich reaction seem much less probable. A mechanistic-type study that combines spectroscopic data of the products and calculation results, with a special focus on the diverse lithiated intermediates that are most likely to engage in the title process (particularly those with internal Li bonds), is presented. The MP2 approach, including the NPA and QTAIM data, provided insight into structures and properties of all these species. Two reaction routes A and B appeared to be possible for the postulated carbene mechanism. An unusual metamorphosis of the CCN atom triad, from a near sp 1-azaallene-type in more stable noncarbene Li enolates to a roughly sp type in their carbene keto tautomers, is recognized in one of these pathways (route B). Dominant forms of resonance structures for the aforementioned tautomeric systems that have seven-membered quasi rings stabilized by Li ions bridging the N and carbonyl O atoms are indicated. Large computational difficulties arising from a huge impact of internal Li complexation on conformational preferences and electronic properties of carbonyl group-bearing lithium derivatives are also discussed. The new γ-keto carbene species under study belong to a subclass of acyclic aminoarylcarbenes.
2-芳基-3-羟基异吲哚啉-1-酮与 -BuLi·TMEDA 体系在 THF 中于-78°C 反应,通过异吲哚啉酮骨架的新型重排,得到一系列非对映异构体 3-氨基茚满-1-酮。据推测,LiOH 从瞬态 -二锂化半亚胺碳烯内消除,生成单重态碳烯,然后通过分子内 C-H 插入捕获。基于分子内曼尼希反应的替代解释似乎不太可能。提出了一种结合产物的光谱数据和计算结果的机理型研究,特别关注可能参与标题过程(特别是那些具有内部 Li 键的)的各种锂化中间体,包括包括 NPA 和 QTAIM 数据,深入了解了所有这些物种的结构和性质。MP2 方法提供了对所有这些物种的结构和性质的深入了解。包括 NPA 和 QTAIM 数据,深入了解了所有这些物种的结构和性质。MP2 方法包括 NPA 和 QTAIM 数据,提供了对所有这些物种的结构和性质的深入了解。两种反应途径 A 和 B 似乎对于所假设的卡宾机理是可能的。在其中一种途径(途径 B)中,CCN 原子三键发生了不寻常的变形,从更稳定的非卡宾 Li 烯醇盐中的近 sp1-氮杂丙烯型转变为其卡宾酮互变异构体中的大致 sp 型。表明了上述互变异构体系的共振结构的主导形式,其中七元准环由桥连 N 和羰基 O 原子的 Li 离子稳定。还讨论了由于内部 Li 络合对羰基取代的锂衍生物的构象偏好和电子性质的巨大影响而产生的大量计算困难。所研究的新 γ-酮卡宾物种属于无环氨基芳基卡宾的一个子类。