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Probing the Structural and Electronic Properties of Dirhenium Halide Clusters: A Density Functional Theory Study

机译:探索卤化二ir团簇的结构和电子性质:密度泛函理论研究

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摘要

Dirhenium halide dianions received considerable attention in past decades due to the unusual metal–metal quadruple bond. The systematic structural evolution of dirhenium halide clusters has not been sufficiently studied and hence is not well-understood. In this work, we report an in-depth investigation on the structures and electronic properties of doubly charged dirhenium halide clusters Re2X82− (X = F, Cl, Br, I). Our computational efforts rely on the well-tested unbiased CALYPSO (Crystal structure AnaLYsis by Particle Swarm Optimization) method combined with density functional theory calculations. We find that all ground-state Re2X82− clusters have cube-like structures of D4h symmetry with two Re atoms encapsulated in halogen framework. The reasonable agreement between the simulated and experimental photoelectron spectrum of the Re2Cl82− cluster supports strongly the reliability of our computational strategy. The chemical bonding analysis reveals that the δ bond is the pivotal factor for the ground-state Re2X82− (X = F, Cl, Br, I) clusters to maintain D4h symmetric cube-like structures, and the enhanced stability of Re2Cl82− is mainly attributed to the chemical bonding of 5d orbital of Re atoms and 3p orbital of Cl atoms.
机译:由于不常见的金属-金属四重键,卤化ir的二价阴离子在过去的几十年中受到了广泛的关注。卤化hen簇的系统结构演化尚未得到足够的研究,因此未被很好地理解。在这项工作中,我们报告了对双电荷卤化卤化hen簇Re2X8 2-(X = F,Cl,Br,I)的结构和电子性质的深入研究。我们的计算工作依赖于经过充分测试的无偏CALYPSO(通过粒子群优化的晶体结构分析)方法与密度泛函理论计算相结合。我们发现所有的基态Re2X8 2-团簇都具有D4h对称的立方体状结构,其中两个Re原子封装在卤素骨架中。 Re2Cl8 2-团簇的模拟和实验光电子谱之间的合理一致性有力地支持了我们计算策略的可靠性。化学键合分析表明,δ键是基态Re2X8 2-(X = F,Cl,Br,I)簇维持D4h对称立方体状结构的关键因素,并且Re2Cl8 2-的增强稳定性主要归因于Re原子的5d轨道和Cl原子的3p轨道的化学键合。

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