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Orbital control over the metal vs. ligand reduction in a series of neutral and cationic bis(cyclopentadienyl) Ti(IV) complexes

机译:在一系列中性和阳离子双(环戊二烯基)Ti(IV)复合物中的金属轨道对金属与配体减少

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摘要

Quantum chemistry calculations showed that the first reduction, as experimentally observed by cyclic voltammetry for a series of neutral and cationic functionalised bis(cyclopentadienyl) titanium(IV) derivatives, is metal based, involving the chemically and electrochemically reversible Ti-IV/Ti-III redox couple. The second reduction peak observed is chemically and electrochemically irreversible. For the neutral [Cp2TiIV(ligand)(n)] (n = 1 or 2) complexes (Cp = cyclopentadienyl), the second irreversible reduction peak is metal-based, while for the cationic [Cp2TiIV(ligand)](+) complexes, the second irreversible reduction peak involves ligand reduction, leading to a Ti-III species coupled to a ligand radical. The electronic properties of the substituents directly influence electron density at the reduction centre when p-interactions between the electro-active centre and the substituent groups exist in the lowest unoccupied molecular orbital (LUMO) of the complexes. In this case, a number of relationships between the electronic properties of the substituents and the reduction potentials have been affirmed, yielding linear relationship between experimentally measured reduction potentials and DFT calculated energies (energy of the LUMO, electron affinity, Mulliken electronegativity and global electrophilicity index). However, the substituent effect is ill defined when the LUMO is highly localised without pi-interaction between the electro-active centre and the substituents.
机译:量子化学计算表明,通过环状伏安法试验到一系列中性和阳离子官能化双(环戊二烯基)钛(IV)衍生物的实验观察,是基于金属的,包括化学和电化学可逆的Ti-IV / Ti-III氧化还原夫妇。观察到的第二还原峰是化学和电化学不可逆转的。对于中性[CP2TIIV(LigAnd)(n)](n = 1或2)复合物(Cp =环戊二烯基),第二不可逆还原峰是基于金属的,而对于阳离子[cp2tiiv(配体)](+)复合物,第二不可逆减少峰涉及配体还原,导致与配体基团偶联的Ti-III物种。当电活性中心和取代基之间的P型相互作用存在于复合物的最低未占用的分子轨道(LumO)中,取代基的电子性质直接影响还原中心的电子密度。在这种情况下,已经确定了取代基的电子性质与减少电位之间的许多关系,在实验测量的降低电位和DFT计算的能量(Lumo,电子亲和力,Mulliken电负性和全球电泳指数的能量之间产生线性关系)。然而,当LumO在没有电活性中心和取代基之间的PI相互作用的情况下,取代基效应被限定。

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  • 来源
    《New Journal of Chemistry》 |2018年第1期|共9页
  • 作者单位

    Univ Free State Dept Chem POB 339 ZA-9300 Bloemfontein South Africa;

    Univ Free State Dept Chem POB 339 ZA-9300 Bloemfontein South Africa;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

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