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Properties of Manganese(III) Ferrocenyl-β-Diketonato Complexes Revealed by Charge Transfer and Multiplet Splitting in the Mn 2p and Fe 2p X-Ray Photoelectron Envelopes

机译:Mn 2p和Fe 2p X射线光电子信封中电荷转移和多重分裂揭示的锰(III)二茂铁基-β-二酮体络合物的性质

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A series of ferrocenyl-functionalized β-diketonato manganese(III) complexes, [Mn(FcCOCHCOR) 3 ] with R = CF 3 , CH 3 , Ph (phenyl) and Fc (ferrocenyl) was subjected to a systematic XPS study of the Mn 2p 3/2 and Fe 2p 3/2 core-level photoelectron lines and their satellite structures. A charge-transfer process from the β-diketonato ligand to the Mn(III) metal center is responsible for the prominent shake-up satellite peaks of the Mn 2p photoelectron lines and the shake-down satellite peaks of the Fe 2p photoelectron lines. Multiplet splitting simulations of the photoelectron lines of the Mn(III) center of [Mn(FcCOCHCOR) 3 ] resemble the calculated Mn 2p 3/2 envelope of Mn 3+ ions well, indicating the Mn(III) centers are in the high spin state. XPS spectra of complexes with unsymmetrical β-diketonato ligands (i.e., R not Fc) were described with two sets of multiplet splitting peaks representing fac and the more stable mer isomers respectively. Stronger electron-donating ligands stabilize fac more than mer isomers. The sum of group electronegativities, Σχ R , of the β-diketonato pendant side groups influences the binding energies of the multiplet splitting and charge transfer peaks in both Mn and Fe 2p 3/2 photoelectron lines, the ratio of satellite to main peak intensities, and the degree of covalence of the Mn–O bond.
机译:对一系列二茂铁基官能化的β-二酮锰(III)配合物[Mn(FcCOCHCOR)3](R = CF 3,CH 3,Ph(苯基)和Fc(二茂铁基))进行了锰的系统XPS研究2p 3/2和Fe 2p 3/2核心级光电子线及其卫星结构。从β-二酮基配体到Mn(III)金属中心的电荷转移过程是造成Mn 2p光电子线显着的摇动卫星峰和Fe 2p光电子线的摇动附属峰的原因。 [Mn(FcCOCHCOR)3]的Mn(III)中心的光电子线的多重分裂模拟与计算得出的Mn 3+离子的Mn 2p 3/2包络非常相似,表明Mn(III)中心处于高自旋州。描述了具有不对称β-二酮基配体(即R不是Fc)的配合物的XPS光谱,分别具有两组分别代表fac和更稳定的mer异构体的多重分裂峰。较之异构体,更强的供电子配体对脂肪酸的稳定程度更高。 β-二酮基侧基侧基的电负性总和ΣχR影响Mn和Fe 2p 3/2光电子线中多重分裂和电荷转移峰的结合能,卫星与主峰强度的比,以及Mn–O键的共价程度。

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