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Synthesis and Molecular and Electronic Structures of a Series of Mo3CoSe4 Cluster Complexes with Three Different Metal Electron Populations

机译:一系列具有三种不同金属电子群的mo3Cose4簇合物的合成,分子和电子结构

摘要

The synthesis, crystal structure, and magnetic properties of [Mo3(CoCO)Se4(dmpe)3Cl3] (1), [Mo3(CoCl)Se4(dmpe)3Cl3] (2), and [Mo3(CoCl)Se4(dmpe)3Cl3](TCNQ) ([2](TCNQ)) (dmpe = 1,2-bis(dimethylphosphanyl)ethane; TCNQ = 7,7,8,8-tetracyanoquinomethane) cubane-type complexes with 16, 15, and 14 metal electrons, respectively, are reported. These compounds complete the series of cobalt-containing Mo3CoQ4 (Q = S, Se) cubane-type complexes, which allows a complete analysis of the consequences of replacing the inner chalcogen and the metal electron count on the structural, magnetic, and electrochemical properties. The experimental evidence is theoretically supported and rationalized on the basis of density-functional theory calculations. For the 15-metal electron [Mo3(CoCl)Se4(dmpe)3Cl3] complex with S = 1/2, both electron paramagnetic resonance and theoretical studies give support to a spin density mainly located on the heteroatom. The nature of the highest occupied molecular orbital upon chalcogen exchange within the Mo3CoQ4 (Q = S, Se) series remains essentially unchanged, whereas the nature of the ligand attached to Co (Cl or CO) results in a different ordering of the molecular orbital scheme. This behavior is explained by the absence of backdonation between an occupied d orbital of Co to an empty π* Cl orbital, to yield frontier orbitals that differ from those of previous models.
机译:[Mo3(CoCO)Se4(dmpe)3Cl3](1),[Mo3(CoCl)Se4(dmpe)3Cl3](2)和[Mo3(CoCl)Se4(dmpe)的合成,晶体结构和磁性3Cl3](TCNQ)([2](TCNQ))(dmpe = 1,2-双(二甲基膦基)乙烷; TCNQ = 7,7,8,8-四氰基喹甲烷)古巴型配合物,含16、15和14种金属分别报告了电子。这些化合物完成了一系列含钴的Mo3CoQ4(Q = S,Se)古巴型配合物的形成,从而可以全面分析更换内部硫族元素和金属电子数量对结构,磁性和电化学性质的影响。实验证据在密度泛函理论计算的基础上得到了理论上的支持和合理化。对于S = 1/2的15金属电子[Mo3(CoCl)Se4(dmpe)3Cl3]配合物,电子顺磁共振和理论研究均支持主要位于杂原子上的自旋密度。 Mo3CoQ4(Q = S,Se)系列中硫族元素交换后占据最高的分子轨道的性质基本保持不变,而与Co(Cl或CO)连接的配体的性质导致分子轨道方案的顺序不同。这种行为的解释是,在Co的d占据轨道到一个空π* Cl轨道之间没有回输,从而产生了与先前模型不同的前沿轨道。

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