School of Chemistry, University of Bristol, Cantock's Close, Bristol BS8 1TS, U.K.
J Am Chem Soc. 2022 Jun 1;144(21):9330-9343. doi: 10.1021/jacs.2c01208. Epub 2022 May 17.
The photoexcitation of α-diazocarbonyl compounds produces singlet carbene intermediates that react with nucleophilic solvent molecules to form ylides. The zwitterionic nature of these newly formed ylides induces rapid changes in their interactions with the surrounding solvent. Here, ultrafast time-resolved infrared absorption spectroscopy is used to study the ylide-forming reactions of singlet carbene intermediates from the 270 nm photoexcitation of ethyl diazoacetate in various solvents and the changes in the subsequent ylide-solvent interactions. The results provide direct spectroscopic observation of the competition between ylide formation and C-H insertion in reactions of the singlet carbene with nucleophilic solvent molecules. We further report the specific solvation dynamics of the tetrahydrofuran (THF)-derived ylide (with a characteristic IR absorption band at 1636 cm) by various hydrogen-bond donors and the coordination by lithium cations. Hydrogen-bonded ylide bands shift to a lower wavenumber by -19 cm for interactions with ethanol, -14 cm for chloroform, -10 cm for dichloromethane, -9 cm for acetonitrile or cyclohexane, and -16 cm for Li coordination, allowing the time evolution of the ylide-solvent interactions to be tracked. The hydrogen-bonded ylide bands grow with rate coefficients that are close to the diffusional limit. We further characterize the specific interactions of ethanol with the THF-derived ylide using quantum chemical (MP2) calculations and DFT-based atom-centered density matrix propagation trajectories, which show preferential coordination to the α-carbonyl group. This coordination alters the hybridization character of the ylidic carbon atom, with the greatest change toward sp character found for lithium-ion coordination.
α-重氮羰基化合物的光激发产生单线态卡宾中间体,这些中间体与亲核溶剂分子反应形成叶立德。这些新形成的叶立德的两性离子性质诱导其与周围溶剂相互作用的快速变化。在这里,超快时间分辨红外吸收光谱用于研究在不同溶剂中通过 270nm 光激发乙基重氮乙酸乙酯产生的单线态卡宾中间体的叶立德形成反应以及随后的叶立德-溶剂相互作用的变化。结果提供了对单线态卡宾与亲核溶剂分子反应中叶立德形成与 C-H 插入之间竞争的直接光谱观察。我们进一步报道了四氢呋喃(THF)衍生的叶立德(在 1636cm 处具有特征 IR 吸收带)与各种氢键供体的特定溶剂化动力学以及与锂离子的配位。氢键合的叶立德带由于与乙醇相互作用而向较低波数移动-19cm,与氯仿相互作用时移动-14cm,与二氯甲烷相互作用时移动-10cm,与乙腈或环己烷相互作用时移动-9cm,与锂离子配位时移动-16cm,从而可以跟踪叶立德-溶剂相互作用的时间演化。氢键合的叶立德带以接近扩散限制的速率系数增长。我们进一步使用量子化学(MP2)计算和基于 DFT 的原子中心密度矩阵传播轨迹来表征乙醇与 THF 衍生的叶立德的特定相互作用,这表明优先与α-羰基配位。这种配位改变了叶立德碳原子的杂化性质,其中与锂离子配位时 sp 特征的变化最大。