Miwa Hideya, Makarova Elena A, Ishii Kazuyuki, Luk'yanets Evgeny A, Kobayashi Nagao
Department of Chemistry, Graduate School of Science, Tohoku University, Sendai 980-8578, Japan.
Chemistry. 2002 Mar 1;8(5):1082-90. doi: 10.1002/1521-3765(20020301)8:5<1082::aid-chem1082>3.0.co;2-u.
Metal-free tetraazachlorin (TAC), -bacteriochlorin (TAB), and -isobacteriochlorin (TAiB) were characterized by electronic absorption, magnetic circular dichroism (MCD), fluorescence, and time-resolved ESR (TR-ESR) spectroscopy, and by cyclic voltammetry. The results are compared with those of metal-free tetraazaporphyrin (TAP). The potential difference DeltaE between the first oxidation and reduction couples decreases in the order TAP>TAiB>TAC>TAB. The splitting of both the Q and Soret bands decreases in the order TAB>TAC>TAP>TAiB. Corresponding to the split absorption bands, MCD spectra show a minus-to-plus pattern with increasing energy in both the Q and Soret regions, which suggests that the energy difference between the HOMO and second HOMO is larger than that between the LUMO and second LUMO. These spectroscopic properties and redox potentials were reproduced by molecular orbital calculations using the ZINDO/S Hamiltonian. The fluorescence quantum yields of the reduced species are much smaller than that of TAP. The zero-field splitting (ZFS) parameters D and E of the excited triplet states (T1) of these species decrease and increase, respectively, on going from TAP to TAC and further to TAB. The D and E values of TAiB are larger than those of the other species. The results are supported by the absence of interaction between the spin over reduced pyrrole moieties of the HOMO and over the LUMO, and by calculations of ZFS under a half-point-charge approximation.
无金属四氮杂卟吩(TAC)、细菌卟吩(TAB)和异细菌卟吩(TAiB)通过电子吸收光谱、磁圆二色性(MCD)光谱、荧光光谱、时间分辨电子顺磁共振(TR-ESR)光谱以及循环伏安法进行了表征。将结果与无金属四氮杂卟啉(TAP)的结果进行了比较。第一氧化还原对之间的电位差ΔE按TAP>TAiB>TAC>TAB的顺序减小。Q带和Soret带的分裂按TAB>TAC>TAP>TAiB的顺序减小。与分裂的吸收带相对应,MCD光谱在Q和Soret区域均显示出能量增加时从负到正的模式,这表明最高占据分子轨道(HOMO)与第二最高占据分子轨道之间的能量差大于最低未占据分子轨道(LUMO)与第二最低未占据分子轨道之间的能量差。这些光谱性质和氧化还原电位通过使用ZINDO/S哈密顿量的分子轨道计算得以重现。还原态物种的荧光量子产率远小于TAP的荧光量子产率。从TAP到TAC再到TAB,这些物种的激发三重态(T1)的零场分裂(ZFS)参数D和E分别减小和增大。TAiB的D和E值大于其他物种的值。这些结果得到了HOMO和LUMO上还原吡咯部分之间不存在自旋相互作用以及半电荷近似下ZFS计算的支持。