Department of Chemistry and the Center for Advanced, Scientific Computing and Modeling, University of North Texas , 1155 Union Circle, #305070, Denton, Texas 76203-5070, United States.
J Am Chem Soc. 2014 Mar 5;136(9):3589-96. doi: 10.1021/ja412433t. Epub 2014 Feb 19.
Negative ion photoelectron (NIPE) spectra of the radical anion of meta-benzoquinone (MBQ, m-OC6H4O) have been obtained at 20 K, using both 355 and 266 nm lasers for electron photodetachment. The spectra show well-resolved peaks and complex spectral patterns. The electron affinity of MBQ is determined from the first resolved peak to be 2.875 ± 0.010 eV. Single-point, CASPT2/aug-cc-pVTZ//CASPT2/aug-cc-pVDZ calculations predict accurately the positions of the 0-0 bands in the NIPE spectrum for formation of the four lowest electronic states of neutral MBQ from the (2)A2 state of MBQ(•-). In addition, the Franck-Condon factors that are computed from the CASPT2/aug-cc-pVDZ optimized geometries, vibrational frequencies, and normal mode vectors, successfully simulate the intensities and frequencies of the vibrational peaks in the NIPE spectrum that are associated with each of these electronic states. The successful simulation of the NIPE spectrum of MBQ(•-) allows the assignment of (3)B2 as the ground state of MBQ, followed by the (1)B2 and (1)A1 electronic states, respectively 9.0 ± 0.2 and 16.6 ± 0.2 kcal/mol higher in energy than the triplet. These experimental energy differences are in good agreement with the calculated values of 9.7 and 15.7 kcal/mol. The relative energies of these two singlet states in MBQ confirm the previous prediction that their relative energies would be reversed from those in meta-benzoquinodimethane (MBQDM, m-CH2C6H4CH2).
间苯醌自由基阴离子的负离子光电子(NIPE)光谱已在 20 K 下获得,使用 355nm 和 266nm 激光进行电子光解脱附。光谱显示出良好分辨的峰和复杂的光谱图案。间苯醌的电子亲和能通过第一个分辨峰确定为 2.875 ± 0.010 eV。单点、CASPT2/aug-cc-pVTZ//CASPT2/aug-cc-pVDZ 计算准确预测了 NIPE 光谱中中性间苯醌的四个最低电子态形成时 0-0 带的位置,从间苯醌自由基(MBQ(•-))的(2)A2 态开始。此外,从 CASPT2/aug-cc-pVDZ 优化的几何形状、振动频率和正则模态向量计算的 Franck-Condon 因子,成功模拟了与这些电子态中的每一个相关的 NIPE 光谱中振动峰的强度和频率。间苯醌自由基(MBQ(•-))的 NIPE 光谱的成功模拟允许将(3)B2 分配为间苯醌的基态,随后是(1)B2 和(1)A1 电子态,分别比三重态高 9.0 ± 0.2 和 16.6 ± 0.2 千卡/摩尔。这些实验能量差异与计算值 9.7 和 15.7 千卡/摩尔非常吻合。间苯醌中这两个单线态的相对能量证实了先前的预测,即它们的相对能量将与间苯醌二甲基(MBQDM,m-CH2C6H4CH2)中的相反。