Institute of Theoretical Chemistry, Shandong University, Jinan 250100 Shandong, China.
J Phys Chem A. 2009 Oct 1;113(39):10521-6. doi: 10.1021/jp9020036.
In this work, the electron structure and charge-transfer mechanism in polypeptide chains are investigated according to natural bond orbitals (NBO) analysis at the level of B3LYP/6-311++G**. The results indicate that the delocalization of electrons between neighboring peptide subgroups can occur in two opposite directions, and the delocalization effect in the direction from the carboxyl end to the amino end has an obvious advantage. As a result of a strong hyperconjugative interaction, the lowest unoccupied NBO of the peptide subgroup, pi*C-O, has significant delocalization to neighboring subgroups, and the energies of these NBOs decrease from the carboxyl end to the amino end. The formation of intramolecular O...H-N type hydrogen bonds also helps to delocalize the electron from the carboxyl end to the amino end. Thus, the electron will flow to the amino end. The superexchange mechanism is suggested in the electron-transfer process.
在这项工作中,根据自然键轨道(NBO)分析,在 B3LYP/6-311++G*水平上研究了多肽链中的电子结构和电荷转移机制。结果表明,电子在相邻肽亚基之间可以朝两个相反的方向离域,并且从羧基端到氨基端的离域效应具有明显的优势。由于强烈的超共轭相互作用,肽亚基的最低空 NBO(piC-O)显著离域到相邻的亚基,这些 NBO 的能量从羧基端到氨基端降低。分子内 O...H-N 型氢键的形成也有助于将电子从羧基端转移到氨基端。因此,电子将流向氨基端。在电子转移过程中提出了超交换机制。