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包含氟化钪结构单元的强键合多核阴离子

Strongly Bound Polynuclear Anions Comprising Scandium Fluoride Building Blocks.

作者信息

Anusiewicz Iwona, Skurski Piotr

机构信息

Laboratory of Quantum Chemistry, Faculty of Chemistry, University of Gdańsk, Wita Stwosza 63, 80-308 Gdańsk, Poland.

Department of Chemistry, University of Utah, Salt Lake City, Utah 84112, United States.

出版信息

Inorg Chem. 2023 Oct 16;62(41):17022-17029. doi: 10.1021/acs.inorgchem.3c02937. Epub 2023 Oct 2.

Abstract

The stability of polynuclear anions composed of ScF building blocks was studied by using ab initio and density functional theory electronic structure methods and flexible basis sets. Thorough exploration of ground state potential energy surfaces of (ScF), (ScF), and (ScF) anions which may be viewed as comprising ScF fragments and the additional fluorine atom led to determining the isomeric structures thereof. It was found that the most stable isomers which are predicted to dominate at room temperature correspond to the compact structures enabling the formation of a large number of Sc-F-Sc bridging linkages rather than to the chain-like structures. The vertical electron detachment energies of the (ScF) anions were found to be very large (spanning the 10.85-12.29 eV range) and increasing with the increasing number of scandium atoms () and thus the ScF building blocks involved in the structure. Thermodynamic stability of (ScF) anions (i.e., their susceptibility to fragmentation) was also verified and discussed.

摘要

利用从头算和密度泛函理论电子结构方法以及灵活的基组,研究了由ScF结构单元组成的多核阴离子的稳定性。对(ScF)、(ScF)和(ScF)阴离子的基态势能面进行了全面探索,这些阴离子可视为由ScF片段和额外的氟原子组成,从而确定了它们的异构结构。结果发现,预计在室温下占主导地位的最稳定异构体对应于能够形成大量Sc-F-Sc桥连键的紧凑结构,而不是链状结构。发现(ScF)阴离子的垂直电子脱离能非常大(范围为10.85-12.29 eV),并且随着钪原子数量()的增加以及结构中所涉及的ScF结构单元数量的增加而增大。还对(ScF)阴离子的热力学稳定性(即它们对碎片化的敏感性)进行了验证和讨论。

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