首页> 外文OA文献 >Supramolecular assembly of diplatinum species through weak PtII⋅⋅⋅PtII intermolecular interactions: A combined experimental and computational study
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Supramolecular assembly of diplatinum species through weak PtII⋅⋅⋅PtII intermolecular interactions: A combined experimental and computational study

机译:通过弱的PtII⋅·⋅PtII分子间相互作用实现双铂物种的超分子组装:结合实验和计算研究

摘要

The present study elucidates the factors that govern the spontaneous self-assembly of a family of dimetal [Pt2L4] (L=dithiocarboxylato ligand) complexes. Experimental data show that variables such as temperature, concentration, solvent and the nature of the ligand L have a critical effect on the reversible self-assembly of supramolecular [Pt2L4]n entities. In solution, new UV/Vis spectroscopic features emerge at low temperatures and/or high concentrations, which are attributed to the formation of oligomeric [Pt2L4]n species. The description of intermolecular Pt⋅⋅⋅Pt interactions, the main driving force for the association, was addressed from a computational perspective. The contributions from intermolecular Pt⋅⋅⋅S and S⋅⋅⋅S interactions to these supramolecular assemblies were found to be repulsive. Experimental UV/Vis data have been interpreted by means of computational spectroscopy.
机译:本研究阐明了控制双金属[Pt2L4](L =二硫代羧基配体)复合物家族自发自组装的因素。实验数据表明,诸如温度,浓度,溶剂和配体L的性质等变量对超分子[Pt2L4] n实体的可逆自组装起关键作用。在溶液中,在低温和/或高浓度下出现了新的UV / Vis光谱特征,这归因于低聚[Pt2L4] n物种的形成。从计算的角度介绍了分子间Pt·⋅·Pt相互作用(缔合的主要驱动力)的描述。发现分子间Pt⋅⋅⋅S和S⋅⋅⋅S相互作用对这些超分子组装体的贡献是排斥的。实验性UV / Vis数据已通过计算光谱学进行了解释。

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