首页> 外文期刊>Inorganic Chemistry: A Research Journal that Includes Bioinorganic, Catalytic, Organometallic, Solid-State, and Synthetic Chemistry and Reaction Dynamics >Predicting the Cis-Trans Dichloro Configuration of Group 15-16 Chelated Ruthenium Olefin Metathesis Complexes: A DFT and Experimental Study
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Predicting the Cis-Trans Dichloro Configuration of Group 15-16 Chelated Ruthenium Olefin Metathesis Complexes: A DFT and Experimental Study

机译:预测第15-16组螯合钌烯烃复分解配合物的顺反二氯构型:DFT和实验研究

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摘要

Gradient-corrected (BP86) and hybrid (M06-L) density functional calculations were used to study the relative stability of cis and trans-dichloro X-chelated benzylidene ruthenium complexes (X = O, S, Se, N, P). Calculations in the gas phase differed from experimental results, predicting the trans-dichloro configuration as being more stable in every case. The addition of Poisson-Boltzmann (PBF) continuum approximation (dichloromethane) corrected the disagreement and afforded energies consistent with experimental results. Novel N, Se, and P chelated ruthenium olefin metathesis complexes were synthesized to evaluate calculation predictions. These findings reinforce the importance of including solvent corrections in DFT calculations of ruthenium metathesis catalysts and predict that stronger a donors as chelating atoms tend to electronically promote the unusual and less active cis-dichloro configuration.
机译:使用梯度校正(BP86)和混合(M06-L)密度泛函计算来研究顺式和反式二氯X螯合的亚苄基钌配合物(X = O,S,Se,N,P)的相对稳定性。气相的计算结果与实验结果有所不同,预言反式二氯构型在每种情况下都更稳定。添加Poisson-Boltzmann(PBF)连续谱逼近法(二氯甲烷)可纠正分歧,并提供与实验结果一致的能量。合成了新型的N,Se和P螯合的钌烯烃复分解配合物,以评估计算预测。这些发现加强了在钌复分解催化剂的DFT计算中包括溶剂校正的重要性,并预测随着螯合原子趋向于电子促进异常且活性较低的顺式-二氯构型,更强的供体。

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