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Ionization and photofragmentation of Ru-3(CO)(12) and Os-3(CO)(12)

机译:Ru-3(CO)(12)和Os-3(CO)(12)的电离和光碎

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摘要

In this paper, we use a combination of photoelectron spectroscopy, mass spectrometry, and density functional theory calculations to get a detailed understanding of valence single and double ionization and the subsequent dissociation processes. This is exemplified on benchmark systems, trimetallo-dodecacarbonyls M-3(CO)(12) with M = Ru, Os, where the energy remaining in the molecule after photoionization can be retrieved by measuring the degree of fragmentation of the molecular ion. The intensity of different mass peaks can thus be directly related to ionization cross sections obtained by photoelectron spectroscopy. We find that the M-CO dissociation energy rises as the number of CO ligands decreases due to dissociation. Moreover, ionization of the CO ligands has a higher cross section than that of the metal center for both single and double ionization. After advanced fragmentation, a CO bond can break and the carbon atom remains bonded to the metal core. In addition, we found that the valence ionization cross sections of M-3(CO)(12) are maximal at about 40 eV photon energy thus showing a more pronounced shape resonance than Ru and Os-complexes with a single metal atom center. Finally, an np. nd giant resonance absorption causes a significant increase of the ionization cross section above 50 eV for Ru-3(CO)(12).
机译:在本文中,我们结合使用了光电子能谱,质谱和密度泛函理论计算,以详细了解化合价单电离和双电离以及随后的离解过程。这在基准系统上以M = Ru,Os为基准的三金属十二碳羰基M-3(CO)(12)为例进行了说明,其中通过测量分子离子的断裂程度可以回收光电离后分子中剩余的能量。因此,不同质量峰的强度可以直接与通过光电子能谱获得的电离截面相关。我们发现,由于解离作用,随着CO配体数量的减少,M-CO的解离能增加。此外,对于单电离和双电离,CO配体的电离截面都比金属中心的截面高。进行高级断裂后,CO键可能断裂,并且碳原子仍然与金属核键合。此外,我们发现M-3(CO)(12)的价电离截面在约40 eV光子能量处最大,因此比具有单个金属原子中心的Ru和Os络合物表现出更明显的形状共振。最后,一个np。对于Ru-3(CO)(12),大的共振吸收会导致50 eV以上的电离截面显着增加。

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