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首页> 外文期刊>Chemistry: A European journal >The electronic structure of the tris(ethylene) complexes [M(C2H4)(3)] (M=Ni, Pd, and Pt): A combined experimental and theoretical study
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The electronic structure of the tris(ethylene) complexes [M(C2H4)(3)] (M=Ni, Pd, and Pt): A combined experimental and theoretical study

机译:三(乙烯)配合物[M(C2H4)(3)](M = Ni,Pd和Pt)的电子结构:组合的实验和理论研究

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In this article we analyze in detail the electronic properties of the D-3h-Symmetric tris(ethylene) complexes of nickel, palladium, and platinum ([M(C2H4)(3)] M=Ni, Pd, Pt). In the case of [Pd(C2H4)(3)] the analysis is based on new experimental IR and Raman spectra for the matrix-isolated molecules and in all cases on the results of quantum-chemical (DFT) calculations. The experimental spectra collected for [Pd(C2H4)(3)] provide evidence for several previously unobserved vibrational modes, including the in-phase and out-of-phase nu(C-C) and delta(CH2) modes, and the in-phase nu(M-C) mode. Special consideration is given to possible inter-ligand interactions. The interaction force constant f(CC,CC) between two C2H4 ligands can be directly estimated from the spectra, and its very small value (0.002 Nm(-1)) indicates the absence of any significant inter-ligand interaction. An analysis of the topology of the theoretical electron density distribution, rho(r), and the corresponding Laplacian, del(2)rho(r), for [Pd(C2H4)(3)] and its lighter and heavier homologues [Ni(C2H4)(3)] and [Pt(C2H4)(3)], respectively, is in full agreement with the conclusions drawn from the experimental results. The combined experimental and quantum-chemical results provide detailed insights in the electronic properties of these prototypical ethylene complexes.
机译:在本文中,我们详细分析了镍,钯和铂的D-3h对称三(乙烯)配合物([M(C2H4)(3)] M = Ni,Pd,Pt)的电子性质。对于[Pd(C2H4)(3)],分析基于基质分离的分子的新实验IR和拉曼光谱,并且在所有情况下均基于量子化学(DFT)计算结果。为[Pd(C2H4)(3)]收集的实验光谱为先前未观察到的几种振动模式提供了证据,包括同相和异相nu(CC)和δ(CH2)模式,以及同相nu(MC)模式。特别考虑可能的配体间相互作用。两个C2H4配体之间的相互作用力常数f(CC,CC)可以直接从光谱中估算出来,其很小的值(0.002 Nm(-1))表明没有任何明显的配体间相互作用。分析[Pd(C2H4)(3)]及其更轻和更重的同系物[Ni()的理论电子密度分布rho(r)和相应的拉普拉斯算子del(2)rho(r)的拓扑C2H4)(3)]和[Pt(C2H4)(3)]分别与实验结果完全吻合。实验结果和量子化学结果的结合为这些原型乙烯配合物的电子性质提供了详细的见识。

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