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从 8-至 18-团簇超原子:通过密度泛函理论计算研究配体保护的 W@Au(dppm) 团簇的电子和光学性质

From 8- to 18-Cluster Electrons Superatoms: Evaluation via DFT Calculations of the Ligand-Protected W@Au(dppm) Cluster Displaying Distinctive Electronic and Optical Properties.

机构信息

Institut des Sciences Chimiques de Rennes (ISCR) - UMR 6226, Univ Rennes, CNRS, F-35000Rennes, France.

Grupo de Química Inorgánica y Materiales Moleculares, Facultad de Ingenieria, Universidad Autonoma de Chile, El Llano Subercaseaux 2801, Santiago7500912, Chile.

出版信息

Inorg Chem. 2023 Feb 20;62(7):3047-3055. doi: 10.1021/acs.inorgchem.2c03771. Epub 2023 Feb 3.

DOI:10.1021/acs.inorgchem.2c03771
PMID:36734972
Abstract

The iconic W@Au icosahedral bare cluster reaches the favorable closed-shell superatomic electron configuration 1S 1P 1D, making it an 18-cluster electron (18-ce) superatom. Here, we pursue the evaluation of a ligand-protected counterpart based on the construction of a fully phosphine-protected [W@Au(dppm)] cluster strongly related to the characterized [Au(dppm)] homometallic counterpart. The later cluster has the same total number of valence electrons as the former but is considered an 8-ce superatom with 1S 1P configuration. The fundamental differences between 8- and 18-ce species are investigated. The character of the frontier orbitals varies from 1P/1D in the 8-ce case to a 1D/ligand for 18-ce species, enabling an efficient charge transfer toward the ligands upon irradiation, being interesting for electron injection in optoelectronic devices and black absorbers applications. Excited-state properties are also revisited, showing different geometrical and electronic structure variations between 8- and 18-ce species. Moreover, the continuum between the 8- and 18-ce limits has been explored by varying the nature of the encapsulated dopant between group 6 and group 11. The transition between the 8- and 18-ce counts can be formally situated between Pt (8-ce) and Ir (18-ce). Thus, 18-ce derivatives obtained as doped counterparts of homometallic gold clusters can introduce useful alternatives to achieve different properties in related structural motifs, which can be further explored owing to their extension of the well-established versatility of current gold nanoclusters.

摘要

标志性的 W@Au 二十面体裸露簇达到了有利的满壳超原子电子构型 1S 1P 1D,使其成为 18-簇电子(18-ce)超原子。在这里,我们基于构建与表征的 [Au(dppm)] 同金属类似物强烈相关的完全膦保护的 [W@Au(dppm)] 簇来追求配体保护对应物的评估。后者簇具有与前者相同数量的价电子,但被认为是具有 1S 1P 构型的 8-ce 超原子。研究了 8-ce 和 18-ce 物种之间的基本差异。前沿轨道的性质从 8-ce 情况下的 1P/1D 变化为 18-ce 物种的 1D/配体,从而在照射时能够有效地向配体转移电荷,这对于光电设备中的电子注入和黑吸收剂应用很有趣。激发态性质也进行了重新研究,显示了 8-ce 和 18-ce 物种之间的不同几何和电子结构变化。此外,通过在第 6 族和第 11 族之间改变封装掺杂剂的性质,还探索了 8-ce 和 18-ce 极限之间的连续体。8-ce 和 18-ce 计数之间的转变可以形式上位于 Pt(8-ce)和 Ir(18-ce)之间。因此,作为同金属金簇掺杂对应物获得的 18-ce 衍生物可以引入有用的替代品,以在相关结构基序中实现不同的性质,由于其扩展了当前金纳米簇的既定多功能性,可以进一步探索这些性质。

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