Gorski Alexander, Köhler Thomas, Seidel Daniel, Lee Jeong Tae, Orzanowska Grazyna, Sessler Jonathan L, Waluk Jacek
Institute of Physical Chemistry, Polish Academy of Sciences, Warsaw, Poland.
Chemistry. 2005 Jul 4;11(14):4179-84. doi: 10.1002/chem.200401343.
Three recently obtained expanded porphyrins represent nice examples of compounds for which the electronic and spectral properties can be predicted from symmetry considerations alone. Perimeter-model-based theoretical analysis of the electronic structure of doubly protonated cyclo[6], cyclo[7], and cyclo[8]pyrrole leads to the anticipation of qualitatively the same electronic absorption and magnetic circular dichroism patterns for all three compounds. These predictions are fully confirmed by experiments, as well as DFT and INDO/S calculations. Due to a characteristic pattern of frontier molecular orbitals, a degenerate HOMO and a strongly split LUMO pair, the three cyclopyrroles show comparable absorption intensity in the Q and Soret regions. Magnetic circular dichroism spectra reveal both A and B Faraday terms, of which the signs and magnitudes are in remarkably good agreement with theoretical expectations. The values of the magnetic moments of the two lowest degenerate excited states have also been obtained.
最近获得的三种扩展卟啉是很好的化合物实例,其电子和光谱性质仅通过对称性考虑就可以预测。基于周长模型对双质子化环[6]、环[7]和环[8]吡咯的电子结构进行理论分析,预计这三种化合物在定性上具有相同的电子吸收和磁圆二色性模式。这些预测得到了实验以及密度泛函理论(DFT)和间略微分重叠/全略微分重叠(INDO/S)计算的充分证实。由于前沿分子轨道的特征模式,即简并的最高占据分子轨道(HOMO)和强烈分裂的最低未占据分子轨道(LUMO)对,这三种环吡咯在Q和Soret区域显示出相当的吸收强度。磁圆二色性光谱揭示了A和B法拉第项,其符号和大小与理论预期非常吻合。还获得了两个最低简并激发态的磁矩值。