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铁硫(FeS)(m = 2 - 8)团簇阴离子的光电子能谱和密度泛函理论研究:共存的多重自旋态

Photoelectron Spectroscopy and Density Functional Theory Studies of Iron Sulfur (FeS) (m = 2-8) Cluster Anions: Coexisting Multiple Spin States.

作者信息

Yin Shi, Bernstein Elliot R

机构信息

Department of Chemistry, NSF ERC for Extreme Ultraviolet Science and Technology, Colorado State University , Fort Collins, Colorado 80523, United States.

出版信息

J Phys Chem A. 2017 Oct 5;121(39):7362-7373. doi: 10.1021/acs.jpca.7b07676. Epub 2017 Sep 26.

Abstract

Iron sulfur cluster anions (FeS) (m = 2-8) are studied by photoelectron spectroscopy (PES) at 3.492 eV (355 nm) and 4.661 eV (266 nm) photon energies, and by density functional theory (DFT) calculations. The most probable structures and ground state spin multiplicities for (FeS) (m = 2-8) clusters are tentatively assigned through a comparison of their theoretical and experiment first vertical detachment energy (VDE) values. Many spin states lie within 0.5 eV of the ground spin state for the larger (FeS) (m ≥ 4) clusters. Theoretical VDEs of these low lying spin states are in good agreement with the experimental VDE values. Therefore, multiple spin states of each of these iron sulfur cluster anions probably coexist under the current experimental conditions. Such available multiple spin states must be considered when evaluating the properties and behavior of these iron sulfur clusters in real chemical and biological systems. The experimental first VDEs of (FeS) (m = 1-8) clusters are observed to change with the cluster size (number m). The first VDE trends noted can be related to the different properties of the highest singly occupied molecular orbitals (NBO, HSOMOs) of each cluster anion. The changing nature of the NBO/HSOMO of these (FeS) (m = 1-8) clusters from a p orbital on S, to a d orbital on Fe, and to an Fe-Fe bonding orbital is probably responsible for the observed increasing trend for their first VDEs with respect to m.

摘要

利用光电子能谱(PES)在3.492电子伏特(355纳米)和4.661电子伏特(266纳米)光子能量下,以及通过密度泛函理论(DFT)计算,对铁硫簇阴离子(FeS)(m = 2 - 8)进行了研究。通过比较(FeS)(m = 2 - 8)簇的理论和实验第一垂直 detachment 能(VDE)值,初步确定了其最可能的结构和基态自旋多重度。对于较大的(FeS)(m≥4)簇,许多自旋态位于基态自旋态的0.5电子伏特范围内。这些低自旋态的理论VDE与实验VDE值吻合良好。因此,在当前实验条件下,这些铁硫簇阴离子中的每一个可能都存在多种自旋态共存的情况。在评估这些铁硫簇在实际化学和生物系统中的性质和行为时,必须考虑这种可用的多种自旋态。观察到(FeS)(m = 1 - 8)簇的实验第一VDE随簇大小(m值)而变化。所观察到的第一VDE趋势可能与每个簇阴离子的最高单占据分子轨道(NBO,HSOMOs)的不同性质有关。这些(FeS)(m = 1 - 8)簇的NBO/HSOMO性质从S上的p轨道,变为Fe上的d轨道,再变为Fe - Fe键合轨道,可能是其第一VDE随m增加的观察趋势的原因。

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