JILA and the Department of Chemistry, University of Colorado, Boulder, CO 80309, USA.
Phys Chem Chem Phys. 2018 Oct 10;20(39):25203-25216. doi: 10.1039/c8cp05403g.
The anionic products following (H + H+) abstraction from o-, m-, and p-methylphenol (cresol) are investigated using flowing afterglow-selected ion flow tube (FA-SIFT) mass spectrometry and anion photoelectron spectroscopy (PES). The PES of the multiple anion isomers formed in this reaction are reported, including those for the most abundant isomers, o-, m- and p-methylenephenoxide distonic radical anions. The electron affinity (EA) of the ground triplet electronic state of neutral m-methylenephenoxyl diradical was measured to be 2.227 ± 0.008 eV. However, the ground singlet electronic states of o- and p-methylenephenoxyl were found to be significantly stabilized by their resonance forms as a substituted cyclohexadienone, resulting in measured EAs of 1.217 ± 0.012 and 1.096 ± 0.007 eV, respectively. Upon electron photodetachment, the resulting neutral molecules were shown to have Franck-Condon active ring distortion vibrational modes with measured frequencies of 570 ± 180 and 450 ± 80 cm-1 for the ortho and para isomers, respectively. Photodetachment to excited electronic states was also investigated for all isomers, where similar vibrational modes were found to be Franck-Condon active, and singlet-triplet splittings are reported. The thermochemistry of these molecules was investigated using FA-SIFT combined with the acid bracketing technique to yield values of 341.4 ± 4.3, 349.1 ± 3.0, and 341.4 ± 4.3 kcal mol-1 for the o-, m-, and p-methylenephenol radicals, respectively. Construction of a thermodynamic cycle allowed for an experimental determination of the bond dissociation energy of the O-H bond of m-methylenephenol radical to be 86 ± 4 kcal mol-1, while this bond is significantly weaker for the ortho and para isomers at 55 ± 5 and 52 ± 5 kcal mol-1, respectively. Additional EAs and vibrational frequencies are reported for several methylphenyloxyl diradical isomers, the negative ions of which are also formed by the reaction of cresol with O-.
采用流动后余晖选择离子流管(FA-SIFT)质谱和阴离子光电子能谱(PES)研究了邻位、间位和对位甲基苯酚(甲酚)中(H+H+)去除后的阴离子产物。报道了该反应中形成的多种阴离子异构体的 PES,包括最丰富异构体的 o-、m-和 p-亚甲基苯酚离域自由基阴离子。测量了中性 m-亚甲基苯氧自由基二聚体基态三重电子态的电子亲和能(EA)为 2.227±0.008eV。然而,发现 o-和 p-亚甲基苯氧的基态单重电子态由于其作为取代环己二烯酮的共振形式而显著稳定,导致测量的 EA 分别为 1.217±0.012 和 1.096±0.007eV。电子光致脱落后,生成的中性分子被证明具有 Franck-Condon 活性的环变形振动模式,其频率分别为邻位和对位异构体的 570±180 和 450±80cm-1。还研究了所有异构体的电子激发态光致脱除,发现类似的振动模式是 Franck-Condon 活性的,并报告了单重态-三重态分裂。使用 FA-SIFT 与酸缓冲技术相结合,研究了这些分子的热化学,得到邻位、间位和对位甲酚自由基的热化学值分别为 341.4±4.3、349.1±3.0 和 341.4±4.3kcal mol-1。构建热力学循环允许实验确定 m-亚甲基苯氧自由基的 O-H 键的键解离能为 86±4kcal mol-1,而对于邻位和对位异构体,该键明显较弱,分别为 55±5 和 52±5kcal mol-1。还报道了几个甲基苯氧自由基二聚体异构体的额外 EA 和振动频率,其负离子也是由甲酚与 O-反应形成的。