Kutin Yury, Reitz Justus, Antoni Patrick W, Savitsky Anton, Pantazis Dimitrios A, Kasanmascheff Müge, Hansmann Max M
Department of Chemistry and Chemical Biology, Technische Universität Dortmund, Otto-Hahn-Str. 6, 44227 Dortmund, Germany.
Department of Physics, Technische Universität Dortmund, Otto-Hahn-Str. 4a, 44227 Dortmund, Germany.
J Am Chem Soc. 2021 Dec 22;143(50):21410-21415. doi: 10.1021/jacs.1c11062. Epub 2021 Dec 13.
Singlet vinylidenes (RC═C:) are proposed as intermediates in a series of organic reactions, and very few have been studied by matrix isolation or gas-phase spectroscopy. Triplet vinylidenes, however, featuring two unpaired electrons at a monosubstituted carbon atom are thus far only predicted as electronically excited-state species and represent an unexplored class of carbon-centered diradicals. We report the photochemical generation and low-temperature EPR/ENDOR characterization of the first ground-state high-spin (triplet) vinylidene. The zero-field splitting parameters ( = 0.377 cm and |/ = 0.028) were determined, and the C hyperfine coupling tensor was obtained by C-ENDOR measurements. Most strikingly, the isotropic C hyperfine coupling constant (50 MHz) is far smaller than the characteristic values of triplet carbenes, demonstrating a unique electronic structure which is supported by quantum chemical calculations.
单线态亚乙烯基(RC═C:)被认为是一系列有机反应中的中间体,并且很少有通过基质隔离或气相光谱法进行研究的。然而,三线态亚乙烯基在单取代碳原子上具有两个未成对电子,到目前为止仅被预测为电子激发态物种,代表了一类尚未探索的以碳为中心的双自由基。我们报道了首个基态高自旋(三线态)亚乙烯基的光化学产生及低温EPR/ENDOR表征。测定了零场分裂参数( = 0.377 cm和|/ = 0.028),并通过C-ENDOR测量获得了C超精细耦合张量。最引人注目的是,各向同性C超精细耦合常数(50 MHz)远小于三线态卡宾的特征值,这证明了一种独特的电子结构,量子化学计算也支持这一点。