JILA and Department of Chemistry and Biochemistry, University of Colorado, Boulder, Colorado 80309, USA.
J Chem Phys. 2017 Feb 21;146(7):074302. doi: 10.1063/1.4975330.
The anion photoelectron spectra of ortho-, meta-, and para-methylphenoxide, as well as methyl deprotonated meta-methylphenol, were measured. Using the Slow Electron Velocity Map Imaging technique, the Electron Affinities (EAs) of the o-, m-, and p-methylphenoxyl radicals were measured as follows: 2.1991±0.0014, 2.2177±0.0014, and 2.1199±0.0014 eV, respectively. The EA of m-methylenephenol was also obtained, 1.024±0.008 eV. In all four cases, the dominant vibrational progressions observed are due to several ring distortion vibrational normal modes that were activated upon photodetachment, leading to vibrational progressions spaced by ∼500 cm. Using the methylphenol O-H bond dissociation energies reported by King et al. and revised by Karsili et al., a thermodynamic cycle was constructed and the acidities of the methylphenol isomers were determined as follows: ΔH=348.39±0.25, 348.82±0.25, 350.08±0.25, and 349.60±0.25 kcal/mol for cis-ortho-, trans-ortho-, m-, and p-methylphenol, respectively. The excitation energies for the ground doublet state to the lowest excited doublet state electronic transition in o-, m-, and p-methylphenoxyl were also measured as follows: 1.029±0.009, 0.962±0.002, and 1.029±0.009 eV, respectively. In the photoelectron spectra of the neutral excited states, C-O stretching modes were excited in addition to ring distortion modes. Electron autodetachment was observed in the cases of both m- and p-methylphenoxide, with the para isomer showing a lower photon energy onset for this phenomenon.
邻甲基苯氧自由基、间甲基苯氧自由基和对甲基苯氧自由基以及间甲基苯酚脱质子的阴离子光电子谱都已被测量。采用慢电子速度映射成像技术,o-、m-和 p-甲基苯氧自由基的电子亲和能(EA)分别测量为 2.1991±0.0014、2.2177±0.0014 和 2.1199±0.0014 eV。m-亚甲基苯酚的 EA 也被获得,为 1.024±0.008 eV。在所有四种情况下,观察到的主要振动进展都是由于几个环变形振动的正常模式在光解离时被激活,导致振动进展之间的间隔为 500 cm 左右。利用 King 等人报道并由 Karsili 等人修正的甲基苯酚 O-H 键离解能,构建了一个热力学循环,并确定了甲基苯酚异构体的酸度如下:顺式邻位、反式邻位、间位和对位甲基苯酚的ΔH 分别为 348.39±0.25、348.82±0.25、350.08±0.25 和 349.60±0.25 kcal/mol。邻位、间位和对位甲基苯氧自由基基态到最低激发态电子跃迁的激发能也分别测量为 1.029±0.009、0.962±0.002 和 1.029±0.009 eV。在中性激发态的光电子光谱中,除了环变形模式外,还激发了 C-O 伸缩模式。间位和对位甲基苯氧自由基都观察到了电子自离解,对位异构体显示出较低的光子能量起始值。