The Laboratory of Theoretical and Computational Chemistry, Science and Engineering College of Chemistry and Biology, Yantai University, Yantai 264005, People's Republic of China.
J Phys Chem A. 2011 Apr 7;115(13):2853-8. doi: 10.1021/jp110777g. Epub 2011 Mar 15.
Quantum chemical calculations have been performed to study the hybridization effect in H(2)O-AuCH(2)CH(3), H(2)O-AuCHCH(2), and H(2)O-AuCCH dimers, and the cooperativity between the hydrogen bond and Au bonding in three trimers (T1, T2, and T3) composed of one AuCCH and two H(2)O molecules. With regard to the organic Au compounds, sp-hybridized AuCCH forms the strongest Au bonding, followed by sp(2) and then sp(3). The C-Au bond is elongated, and its elongation becomes larger with the increase of the s character in hybrid orbitals, whereas the corresponding stretch vibration displays a small blue shift. The positive cooperativity is present for the hydrogen bond and Au bonding in T1 and T2 trimers, whereas the negative cooperativity is found in T3 trimer. The results show that the hybridization effect and cooperative interaction in Au bonding are similar to those in hydrogen bonds. Additionally, an OH···Au hydrogen bond is suggested in T1 trimer.
已进行量子化学计算,以研究 H(2)O-AuCH(2)CH(3)、H(2)O-AuCHCH(2) 和 H(2)O-AuCCH 二聚体中的杂化效应,以及由一个 AuCCH 和两个 H(2)O 分子组成的三个三聚体(T1、T2 和 T3)中氢键和 Au 键之间的协同作用。对于有机 Au 化合物,sp 杂化的 AuCCH 形成最强的 Au 键,其次是 sp(2),然后是 sp(3)。C-Au 键被拉长,其伸长率随着杂化轨道中 s 成分的增加而增大,而相应的伸缩振动则显示出较小的蓝移。在 T1 和 T2 三聚体中,氢键和 Au 键具有正协同作用,而在 T3 三聚体中则存在负协同作用。结果表明,Au 键中的杂化效应和协同相互作用与氢键中的相似。此外,在 T1 三聚体中还提出了一个 OH···Au 氢键。