Reva Igor, Jesus A J Lopes, Nunes Cláudio M, Roque José P L, Fausto Rui
University of Coimbra, CQC, Department of Chemistry, Coimbra 3004-535, Portugal.
University of Coimbra, CIEPQPF, Department of Chemical Engineering, Coimbra 3030-790, Portugal.
J Org Chem. 2021 May 7;86(9):6126-6137. doi: 10.1021/acs.joc.0c02970. Epub 2021 Apr 19.
The monomers of 1,3-benzoxazole isolated in a cryogenic argon matrix were characterized by infrared spectroscopy. The photochemistry of matrix-isolated 1,3-benzoxazole, induced by excitation with a frequency-tunable narrowband UV light, was investigated. Irradiation at 233 nm resulted in a nearly quantitative conversion of 1,3-benzoxazole into 2-isocyanophenol. The individual photochemical behavior of the produced 2-isocyanophenol was studied upon excitations at 290 nm, where 1,3-benzoxazole does not react. The photochemistry of isomeric matrix-isolated 2-cyanophenol was also studied. The photoreactions of 2-substituted (cyano- or isocyano-) phenols were found to have many similarities: (i) OH bond cleavage, yielding a 2-substituted (cyano- or isocyano-) phenoxyl radical and an H-atom, (ii) recombination of the detached H-atom, resulting in an oxo tautomer, and (iii) decomposition leading to fulvenone, together with HCN and HNC. In another photoprocess, 2-cyanophenol undergoes a [1,5] H-shift from the hydroxyl group to the cyano group yielding isomeric ketenimine. The analogous [1,5] H-shift from the hydroxyl group to the isocyano group must have also occurred in 2-isocyanophenol; however, the resulting nitrile ylide isomer is kinetically unstable and collapses to benzoxazole. All photoproducts were characterized by comparing their observed infrared spectra with those computed at the B3LYP/6-311++G(d,p) level. The mechanistic analysis of the photochemistry occurring in the family of the title compounds is presented.
在低温氩气基质中分离出的1,3-苯并恶唑单体通过红外光谱进行了表征。研究了基质隔离的1,3-苯并恶唑在频率可调窄带紫外光激发下的光化学性质。在233nm处进行辐照导致1,3-苯并恶唑几乎定量地转化为2-异氰基苯酚。在290nm激发下研究了生成的2-异氰基苯酚的个体光化学行为,此时1,3-苯并恶唑不发生反应。还研究了异构体基质隔离的2-氰基苯酚 的光化学性质。发现2-取代(氰基或异氰基)苯酚的光反应有许多相似之处:(i)OH键断裂,生成2-取代(氰基或异氰基)苯氧基自由基和一个氢原子,(ii)分离出的氢原子重组,产生氧代互变异构体,以及(iii)分解生成富烯酮,同时生成HCN和HNC。在另一个光过程中,2-氰基苯酚经历从羟基到氰基的[1,5]氢迁移,生成异构体烯酮亚胺。在2-异氰基苯酚中也一定发生了从羟基到异氰基的类似[1,5]氢迁移;然而,生成的腈叶立德异构体在动力学上不稳定,会分解为苯并恶唑。通过将观察到的红外光谱与在B3LYP/6-311++G(d,p)水平计算的光谱进行比较,对所有光产物进行了表征。本文给出了标题化合物家族中发生的光化学机理分析。