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The Energetic Significance of Metallophilic Interactions

机译:金属互动的能量意义

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摘要

Metallophilic interactions are increasingly recognized as playing an important role in molecular assembly, catalysis, and bio-imaging. However, present knowledge of these interactions is largely derived from solid-state structures and gas-phase computational studies rather than quantitative experimental measurements. Here, we have experimentally quantified the role of aurophilic (Au-I...Au-I), platinophilic (Pt-II...Pt-II), palladophilic (Pd-II...Pd-II), and nickelophilic (Ni-II...Ni-II) interactions in self-association and ligand-exchange processes. All of these metallophilic interactions were found to be too weak to be well-expressed in several solvents. Computational energy decomposition analyses supported the experimental finding that metallophilic interactions are overall weak, meaning that favorable dispersion and orbital hybridization contributions from M...M binding are largely outcompeted by electrostatic or dispersion interactions involving ligand or solvent molecules. This combined experimental and computational study provides a general understanding of metallophilic interactions and indicates that great care must be taken to avoid over-attributing the energetic significance of metallophilic interactions.
机译:逐渐被认为在分子组装,催化和生物成像中起着重要作用,逐渐被认为是含有金属相互作用。然而,目前这些相互作用的知识主要来自固态结构和气相计算研究而不是定量实验测量。在这里,我们已经通过实验量化了厌恶(Au-I ... Au-i),磷酸磷尿(Pt-II ... Pt-II),脱水果(PD-II ... PD-II)和Neckopehilic的作用(Ni-II ... Ni-II)自我关联和配体交换过程中的相互作用。发现所有这些金属相互作用在几种溶剂中表达过弱。计算能量分解分析支持实验发现,即金属相互作用总体弱,这意味着来自M ... M结合的有利分散和轨道杂交贡献主要通过涉及配体或溶剂分子的静电或分散相互作用而偏离。这种合并的实验和计算研究提供了对金属相互作用的一般性理解,并表明必须采取很好的注意,以避免过度归因于金属相互作用的能量意义。

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