Dipartimento di Chimica, Università degli Studi di Perugia, Via Elce di Sotto, 8, 06123 Perugia, Italy.
J Am Chem Soc. 2009 Mar 11;131(9):3170-1. doi: 10.1021/ja809998y.
The relative anion-cation orientation in [(PPh(3))Au(4-Me-styrene)]BF(4) (1BF(4)) and [(NHC)Au(4-Me-styrene)]BF(4) [2BF(4); NHC = 1,3-bis(di-iso-propylphenyl)-imidazol-2-ylidene] has been investigated by combining (19)F,(1)H-HOESY NMR spectroscopy and Density Functional Theory (DFT) calculations incorporating solvent and relativistic effects. It has been found that BF(4)(-) locates on the side of 4-Me-styrene, close to the olefin region that is opposite to the 4-Me-Ph moiety in 1BF(4). In 2BF(4), the counterion approaches the cation from the side of the NHC ligand and is mainly located close to the imidazole ring. In both cases, the counterion resides far away from the gold site, the latter carrying only a small fraction of the positive charge. This indicates that the preferential position of the counterion is tunable through the choice of the ancillary ligand, and this opens the way to greater control over the properties and activity of these catalysts.
[(PPh(3))Au(4-Me-styrene)]BF(4)(1BF(4))和[(NHC)Au(4-Me-styrene)]BF(4) [2BF(4);NHC = 1,3-双(二异丙基苯基)咪唑-2-亚基]中相对的阴离子-阳离子取向已通过结合 (19)F,(1)H-HOESY NMR 光谱和密度泛函理论(DFT)计算(包括溶剂和相对论效应)进行了研究。结果发现 BF(4)(-)位于 4-Me-苯乙烯的一侧,靠近烯烃区域,与 1BF(4)中的 4-Me-Ph 部分相对。在 2BF(4)中,抗衡离子从 NHC 配体的一侧接近阳离子,主要位于靠近咪唑环的位置。在这两种情况下,抗衡离子都远离金位,后者只携带一小部分正电荷。这表明通过选择辅助配体可以调节抗衡离子的优先位置,这为更好地控制这些催化剂的性质和活性开辟了道路。