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Tunable Redox Potential, Optical Properties, and Enhanced Stability of Modified Ferrocene-Based Complexes

机译:改性二茂铁基配合物的可调节氧化还原电位,光学性质和增强的稳定性

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摘要

We report a series of ferrocene-based derivatives and their corresponding oxidized forms in which the introduction of simple electron donating groups like methyl or tert-butyl units on cyclopentadienyl-rings afford great tunability of Fe+III/Fe+II redox potentials from +0.403 V down to ?0.096 V versus saturated calomel electrode. The spin forbidden d–d transitions of ferrocene derivatives shift slightly toward the blue region with an increasing number of electron-donating groups on the cyclopentadienyl-rings with very little change in absorptivity values, whereas the ligand-to-metal transitions of the corresponding ferricinium salts move significantly to the near-IR region. The electron-donating groups also contribute in the strengthening of electron density of Fe+III d-orbitals, which therefore improves the chemical stability against the oxygen reaction. Further, density functional theory calculations show a reducing trend in outer shell reorganization energy with an increasing number of the electron donating units.
机译:我们报道了一系列基于二茂铁的衍生物及其相应的氧化形式,其中在环戊二烯基环上引入简单的给电子基团(如甲基或叔丁基单元)可提供从+0.403到Fe + III / Fe + II氧化还原电位的极大可调性相对于饱和甘汞电极,V低至〜0.096V。二茂铁衍生物的自旋禁止d–d跃迁向蓝色区域移动,环戊二烯基环上的给电子基团数量增加,吸收率值变化很小,而相应三价铁的配体-金属跃迁盐会明显移动到近红外区域。给电子基团也有助于增强Fe + III d-轨道的电子密度,因此提高了抗氧反应的化学稳定性。此外,密度泛函理论计算表明,随着电子供体单元数量的增加,外壳重组能降低。

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