Rodríguez-Kessler Peter L, Muñoz-Castro Alvaro
Centro de Investigaciones en Óptica A.C., Loma del Bosque 115, Col. Lomas del Campestre, León, Guanajuato, 37150, Mexico.
Facultad de Ingeniería, Arquitectura y Diseño, Universidad San Sebastián, Bellavista 7, Santiago, 8420524, Chile.
Phys Chem Chem Phys. 2024 Mar 6;26(10):8419-8425. doi: 10.1039/d3cp05394f.
Formation of cluster-based materials requires a fundamental understanding of the resulting cluster aggregation processes. The Sn Zintl-ion structure can be viewed as a building block featuring a spherical aromatic species, leading to a cluster gathering upon oxidative coupling and/or mediated by transition metals. Here, we evaluate the spherical aromatic properties of [Sn-Sn], [Ag(Sn-Sn)] and [(η-Sn)Ag(η-Sn)], as aggregates of two Sn building units held together oxidative coupling and mediated by a Ag(I) transition metal center. Our results from magnetic criteria of aromaticity show that the inherent spherical aromatic characteristics of the parent Sn cluster are persistent in the overall aggregate where the enabled shielding cones ascribed to each Sn unit are able to interplay between them, leading to an overlap of the shielding regions. Hence, the two approaches for bringing cluster units together are able to retain the inherent spherical aromatic features for each Sn unit, leading to a cluster-based dimer where the parent properties remain. Thus, further cluster-based materials can be envisaged from aggregation upon oxidative coupling and/or mediated by transition metals, where the constituent building blocks retain their initial features, useful to guide the formation of more complex cluster-based aggregates.
基于团簇的材料的形成需要对由此产生的团簇聚集过程有基本的了解。锡津特耳离子结构可以被视为一种具有球形芳香族物种的结构单元,导致在氧化偶联和/或由过渡金属介导时发生团簇聚集。在这里,我们评估了[Sn-Sn]、[Ag(Sn-Sn)]和[(η-Sn)Ag(η-Sn)]的球形芳香特性,它们是由两个锡结构单元通过氧化偶联结合在一起并由Ag(I)过渡金属中心介导形成的聚集体。我们基于芳香性磁性标准的结果表明,母体锡团簇固有的球形芳香特征在整个聚集体中持续存在,其中归因于每个锡单元的屏蔽锥能够在它们之间相互作用,导致屏蔽区域的重叠。因此,将团簇单元聚集在一起的两种方法能够保留每个锡单元固有的球形芳香特征,从而形成一种基于团簇的二聚体,其母体特性得以保留。因此,可以设想通过氧化偶联和/或由过渡金属介导的聚集形成更多基于团簇的材料,其中组成结构单元保留其初始特征,这有助于指导形成更复杂的基于团簇的聚集体。