Nelsen Stephen F, Luo Yun, Weaver Michael N, Lockard Jenny V, Zink Jeffrey I
Department of Chemistry, University of Wisconsin, 1101 University Avenue, Madison, Wisconsin 53706-1396, USA.
J Org Chem. 2006 May 26;71(11):4286-95. doi: 10.1021/jo060466l.
The optical absorption spectra of the delocalized intervalence radical cations of seven o,o'-linked benzidine derivatives that have the nitrogens protected as 9-(9-aza-bicyclo[3.3.1]nonan-3-one) derivatives are discussed and compared with that of the p-phenylene radical cation. The linking units are CH2, CH2CH2, NMe, S, SO2, and C=O, and we also studied H,H (the unlinked benzidine). The lowest-energy absorption band is assigned as the transition from the antibonding combination of symmetrical N and aromatic orbitals to the antibonding combination of the antisymmetric N and aromatic orbitals using TD-DFT calculations, and a good correlation between the observed transition energies and those calculated using the simple Koopmans theorem-based "neutral in-cation geometry" calculations on the UB3LYP/6-31G* structures is found. The use of the two-state model that equates the electronic interaction through the bridge between the amino groups with half of the lowest transition energy is seriously incorrect for these and other delocalized intervalence compounds. The problem of extracting the electronic interactions that actually are involved from calculated transition energies is discussed.
讨论了七种氮原子被保护为9-(9-氮杂双环[3.3.1]壬烷-3-酮)衍生物的邻,邻'-联苯胺衍生物的离域价间自由基阳离子的光吸收光谱,并与对亚苯基自由基阳离子的光吸收光谱进行了比较。连接单元为CH2、CH2CH2、NMe、S、SO2和C=O,我们还研究了H,H(未连接的联苯胺)。使用TD-DFT计算将最低能量吸收带指定为从对称N和芳族轨道的反键组合到反对称N和芳族轨道的反键组合的跃迁,并且发现在UB3LYP/6-31G*结构上使用基于简单库普曼定理的“中性阳离子几何”计算所观察到的跃迁能量与计算出的跃迁能量之间具有良好的相关性。对于这些以及其他离域价间化合物,使用将通过氨基之间的桥的电子相互作用等同于最低跃迁能量的一半的双态模型是严重错误的。讨论了从计算出的跃迁能量中提取实际涉及的电子相互作用的问题。