首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Combined theoretical and experimental analysis of the bonding in the heterobimetallic cubane-type Mo3NiS4 and Mo3CuS4 core clusters
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Combined theoretical and experimental analysis of the bonding in the heterobimetallic cubane-type Mo3NiS4 and Mo3CuS4 core clusters

机译:杂双金属古巴型Mo3NiS4和Mo3CuS4核团簇结合的理论和实验分析

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X-ray structural data for the cubane-type clusters [Mo3CuS4(dmpe)(3)Cl-4](+) and Mo3NiS4(dmpe)(3)Cl-4 (dmpe = 1,2-bis(dimethylphosphino)ethane) with 16 metal electrons have been compared with optimized structural parameters calculated using "ab initio" methodologies. Compound Mo3NiS4(dmpe)(3)Cl-4 crystallizes in the cubic noncentrosymmetric space group P2(1)3 with a Mo-Ni distance of 2.647 A, that is 0.2 A shorter than the Mo-Cu bond length in the isoelectronic copper cluster. The best agreement between theory and experiments has been obtained using the B3P86 method. In order to validate the B3P86 results, accurate infrared and Raman spectra have been acquired and the vibrational modes associated to the cubane-type Mo3M'S-4 (M' = Cu or Ni) unit have been assigned theoretically. The electronic changes taking place when incorporating the M' into the Mo3S4 unit have been analyzed from a theoretical and experimental perspective. The bond dissociation energies between M'-Cl and Mo3S4 fragments show that formation of [Mo3CuS4(dmpe)(3)Cl-4](+) is 135 kcal/mol energetically less favorable than the Ni incorporation. The more robust nature of the Mo3NiS4 fragment has been confirmed by mass spectrometry. The X-ray photoelectron spectroscopy (XPS) spectra of the trimetallic and tetrametallic complexes have been measured and the obtained binding energies compared with the computed electronic populations based on topological approaches of the electron localization function (ELF). The energies and shapes of the Cu 2p and Ni 2p lines indicate formal oxidation states of Cu(I) and Ni(II). However, the reductive addition of nickel into [Mo3S4(dmpe)(3)Cl-3](+) causes a small decrease in the Mo 3d binding energies. This fact prevents an unambiguous assignment of an oxidation state in a conventional way, a circumstance that has been analyzed through the covariance of the electronic populations associated to the C(M') core and V(Mo3Ni) and V(S(2)') valence basins where Mo3NiS4 is a particularly electronically delocalized chemical entity.
机译:古巴型团簇[Mo3CuS4(dmpe)(3)Cl-4](+)和Mo3NiS4(dmpe)(3)Cl-4的X射线结构数据(dmpe = 1,2-双(二甲基膦基)乙烷)将具有16种金属电子的X射线与使用“从头算”方法计算出的优化结构参数进行了比较。化合物Mo3NiS4(dmpe)(3)Cl-4在立方非中心对称空间群P2(1)3中结晶,其Mo-Ni距离为2.647 A,比等电子铜簇中的Mo-Cu键长短0.2 A 。使用B3P86方法已在理论和实验之间取得了最佳的一致性。为了验证B3P86的结果,已经获得了准确的红外光谱和拉曼光谱,并且从理论上指定了与古巴型Mo3M'S-4(M'= Cu或Ni)单元相关的振动模式。从理论和实验的角度分析了将M'掺入Mo3S4单元时发生的电子变化。 M'-Cl和Mo3S4片段之间的键解离能表明,[Mo3CuS4(dmpe)(3)Cl-4](+)的形成在能量上比Ni掺入低135 kcal / mol。 Mo3NiS4片段的更坚固的性质已通过质谱法确认。已经测量了三金属和四金属配合物的X射线光电子能谱(XPS),并与基于电子定位函数(ELF)的拓扑学方法计算出的电子种群相比,获得了结合能。 Cu 2p和Ni 2p线的能量和形状表明Cu(I)和Ni(II)的形式氧化态。但是,将镍还原添加到[Mo3S4(dmpe)(3)Cl-3](+)中会导致Mo 3d结合能的小幅下降。这一事实可以防止以常规方式明确分配氧化态,这种情况已通过与C(M')核以及V(Mo3Ni)和V(S(2)'相关的电子种群的协方差进行了分析。价盆,其中Mo3NiS4是特别电子离域的化学实体。

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