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Phenyloxenium Ions: More Like Phenylnitrenium Ions than Isoelectronic Phenylnitrenes?

机译:苯氧en离子:比等电子苯氧钛更像苯氧nit离子?

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摘要

The geometries and energies of the electronic states of phenyloxenium ion 1 (Ph−O+) were computed at the multireference CASPT2/pVTZ level of theory. Despite being isoelectronic to phenylnitrene 4, the phenyloxenium ion 1 has remarkably different energetic orderings of its electronic states. The closed-shell singlet configuration (1A1) is the ground state of the phenyloxenium ion 1, with a computed adiabatic energy gap of 22.1 kcal/mol to the lowest-energy triplet state (3A2). Open-shell singlet configurations (1A2, 1B1, 1B2, 21A1) are significantly higher in energy (\u3e30 kcal/mol) than the closed-shell singlet configuration. These values suggest a revision to the current assignments of the ultraviolet photoelectron spectroscopy bands for the phenoxy radical to generate the phenyloxenium ion 1. For para-substituted phenyloxenium ions, the adiabatic singlet−triplet energy gap (ΔEST) is found to have a positive linear free energy relationship with the Hammett-like σ+R/σ+ substituent parameters; for meta substituents, the relationship is nonlinear and negatively correlated. CASPT2 analyses of the excited states of p-aminophenyloxenium ion 5 and p-cyanophenyloxenium ion 10 indicate that the relative orderings of the electronic states remain largely unperturbed for these para substitutions. In contrast, meta-donor-substituted phenyloxenium ions have low-energy open-shell states (open-shell singlet, triplet) due to stabilization of a π,π* diradical state by the donor substituent. However, all of the other phenyloxenium ions and larger aryloxenium ions (naphthyl, anthryl) included in this study have closed-shell singlet ground states. Consequently, ground-state reactions of phenyloxenium ions are anticipated to be more closely related to closed-shell singlet arylnitrenium ions (Ar−NH+) than their isoelectronic arylnitrene (Ar−N) counterparts.
机译:在理论的多参考CASPT2 / pVTZ水平下,计算了苯氧合ion离子1(Ph-O +)的电子态的几何形状和能量。尽管与亚苯基丁烯4是等电子的,但苯氧鎓离子1的电子态具有明显不同的能级。闭壳单线态(1A1)是苯氧en离子1的基态,与最低能量的三重态(3A2)的绝热能隙为22.1 kcal / mol。开壳单线态配置(1A2、1B1、1B2、21A1)的能量(\ u3e30 kcal / mol)明显高于闭壳单线态配置。这些值表明对苯氧基自由基产生苯氧en离子1的紫外光电子能谱谱带的当前分配进行了修正。对于对位取代的苯氧en离子,绝热单重态三重态能隙(ΔEST)具有正线性与Hammett型σ+ R /σ+取代基参数的自由能关系;对于间取代基,该关系是非线性的并且是负相关的。对对氨基苯氧en离子5和对氰基苯氧ion离子10的激发态的CASPT2分析表明,对于这些对位取代,电子态的相对顺序基本上不受干扰。相反,由于供体取代基使π,π*双自由基状态稳定,间-供体取代的苯氧鎓离子具有低能量的开壳态(开壳单重态,三重态)。但是,本研究中包括的所有其他苯氧en离子和较大的芳氧en离子(萘基,蒽基)均具有闭壳单线态基态。因此,预计苯氧en离子的基态反应与其等电芳基氮化物(Ar-N)对应物相比,与闭壳单重芳基氮化物离子(Ar-NH +)的关系更紧密。

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