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Can We Safely Obtain Formal Oxidation States from Centroids of Localized Orbitals?

机译:我们可以安全地从本地化轨道的质心安全地获得正式氧化国家吗?

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The use of centroids of localized orbitals as a method to derive oxidation states (OS) from first-principles is critically analyzed. We explore the performance of the closest-atom distance criterion to assign electrons for a number of challenging systems, including high-valent transition metal compounds, π-adducts, and transition metal (TM) carbenes. Here, we also introduce a mixed approach that combines the position of the centroids with Bader’s atomic basins as an alternative criterion for electron assignment. The closest-atom criterion performs reasonably well for the challenging systems, but wrongly considers O-H and N-H bonds as hydrides. The new criterion fixes this problem, but underperforms in the case of TM carbenes. Moreover, the OS assignment in dubious cases exhibit undesirable dependence on the particular choice for orbital localization.
机译:将局部轨道的质心用作来自第一原理的氧化态(OS)的方法是重大分析。我们探讨了最接近原子距离标准的性能,以分配了许多具有挑战性的系统的电子,包括高价转变金属化合物,π加合物和过渡金属(TM)碳酸盐。在这里,我们还介绍了一种混合方法,该方法将质心与獾的原子盆地相结合,作为电子分配的替代标准。最接近的原子标准对于具有挑战性的系统来说,但是错误地考虑了O-H和N-H键作为氢化物。新标准修复了这个问题,但在TM Carbenes的情况下表现不佳。此外,怀疑案例中的OS分配表现出对轨道局部化的特定选择的不希望的依赖性。

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