Ortolan Alexandre O, Caramori Giovanni F, Parreira Renato L T, Muñoz-Castro Alvaro
Departamento de Química, Universidade Federal de Santa Catarina, Campus Universitário Trindade, CP 476, Florianópolis, SC, 88040-900, Brazil.
Núcleo de Pesquisa em Ciências Exatas e Tecnológicas, Universidade de Franca, Franca, SP, 14404-600, Brazil.
Chemphyschem. 2018 Sep 18;19(18):2321-2330. doi: 10.1002/cphc.201800470. Epub 2018 Jul 10.
Helicene ligands possess a unique helicoidal π-conjugated framework providing high optical rotation values. This has stimulated a growing interest in helicene derivatives as building blocks, which has triggered the development of simple strategies to tune their properties. In this context, we evaluated the formation of cation-π complexes derived from [6]- and [7]helicene, involving Sn , Cd , and In in addition of Ag , which appears as a plausible modification of such helicoidal structure. The nature of the cation-π interaction in the studied helicene complexes exhibits a covalent character, accounting for ligand π-donation to 5 s and 5p empty orbitals of the involved cations. Furthermore, the evaluation of their optical activity exhibits notorious modification patterns in the circular dichroism spectrum, suggesting that the modifications of the optical activity are dependent on the nature of the cation and its related charge state. Thus, the plausible formation of new cation-π complexes derived from helicene ligands, as discussed here, may lead to the characterization of novel species expanding the chemistry of helicene metal complexes to even to larger helicene units. We believe that the present study may open new avenues in the formation of cation-π helicene complexes.
螺旋烯配体具有独特的螺旋π共轭骨架,能提供高旋光值。这激发了人们对螺旋烯衍生物作为构建单元的兴趣日益浓厚,进而引发了开发简单策略来调节其性质的研究。在此背景下,我们评估了由[6] - 和[7]螺旋烯衍生的阳离子 - π络合物的形成,其中涉及除银之外的锡、镉和铟,这似乎是对这种螺旋结构的一种合理修饰。所研究的螺旋烯络合物中阳离子 - π相互作用的性质表现出共价特征,这是由于配体向所涉及阳离子的5s和5p空轨道进行了π电子给予。此外,对其光学活性的评估在圆二色光谱中呈现出显著的修饰模式,这表明光学活性的修饰取决于阳离子的性质及其相关电荷状态。因此,如本文所讨论的,由螺旋烯配体衍生的新型阳离子 - π络合物的合理形成,可能会导致新物种的表征,从而将螺旋烯金属络合物的化学扩展到更大的螺旋烯单元。我们相信本研究可能会为阳离子 - π螺旋烯络合物的形成开辟新途径。