Modelli Alberto, Jones Derek
Dipartimento di Chimica G. Ciamician, Università di Bologna, via Selmi 2, 40126 Bologna, Italy.
J Phys Chem A. 2005 Dec 29;109(51):11802-6. doi: 10.1021/jp055420v.
The energies of the lowest-lying anion states of phenyl (C6H5N=C=O) and benzyl (C6H5CH2N=C=O) isocyanates have been determined experimentally in the gas phase for the first time using electron transmission spectroscopy (ETS), and their localization properties have been evaluated using HF/6-31G, MP2/6-31G*, and B3LYP/6-31G* calculations. The lowest-lying anion state of phenyl isocyanate, mainly of benzene ring character but with some contribution also from the N=C=O pi-system, lies at significantly higher energy than that of other benzenes substituted by pi-functionals, such as benzaldehyde or styrene. The scaling with the use of suitable empirical equations of the virtual orbital energies (VOEs) for orbitals with predominantly pi*(ring) character calculated for the neutral-state molecules leads to vertical attachment energies (VAEs) which closely correspond to those determined experimentally, whereas those calculated for the predominantly pi*(CO) and pi*(NC) orbitals (3rd and 4th LUMO, respectively) are significantly different from the corresponding measured values notwithstanding the fact that the calculations reproduce the shortening of the N=C and C=O double bonds.
首次在气相中使用电子传输光谱法(ETS)实验测定了苯基异氰酸酯(C6H5N = C = O)和苄基异氰酸酯(C6H5CH2N = C = O)最低能阴离子态的能量,并使用HF/6 - 31G、MP2/6 - 31G和B3LYP/6 - 31G计算评估了它们的定域性质。苯基异氰酸酯的最低能阴离子态主要具有苯环特征,但N = C = O π体系也有一定贡献,其能量明显高于其他被π官能团取代的苯,如苯甲醛或苯乙烯。对于中性态分子计算得到的主要具有π*(环)特征的轨道,使用合适的经验方程对虚拟轨道能量(VOE)进行标度,得到的垂直电子亲合能(VAE)与实验测定值密切对应,而对于主要具有π*(CO)和π*(NC)轨道(分别为第3和第4低未占分子轨道)计算得到的VAE与相应测量值有显著差异,尽管计算结果重现了N = C和C = O双键的缩短。