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Contrasting Effects of Axial Ligands on Electron-Transfer Versus Proton-Coupled Electron-Transfer Reactions of Nonheme Oxoiron(IV) Complexes

机译:轴向配体对非血红素氧铁(IV)配合物电子转移与质子耦合电子转移反应的反作用

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The effects of axial ligands on electron-transfer and proton-coup ledelectron-transfer reactions of mononuclear nonheme oxoiron(IV) complexes were investigated by using [FeIV(O)ACHTUNGTRENUNG(tmc)(X)]n+ (1-X) with various axial ligands, in which tmc is 1,4,8,11- tetramethyl-1,4,8,11-tetraazacyclotetradecane and X is CH3CN (1-NCCH3), CF3COO- (1-OOCCF3), or N3- (1-N3), and ferrocene derivatives as electron donors. As the binding strength of the axial ligands increases, the one-electron reduction potentials of 1-X (Ered, V vs. saturated calomel electrode (SCE)) are more negatively shifted by the binding of the more electron-donating axial ligands in the order of 1-NCCH3 (0.39) > 1-OOCCF3 (0.13) > 1-N3 (0.05 V). Rate constants of electron transfer from ferrocene derivatives to 1-X were analyzed in light of the Marcus theory of electron transfer to determine reorganization energies (l) of electron transfer. The l values decrease in the order of 1-NCCH3 (2.37) > 1-OOCCF3 (2.12) > 1-N3 (1.97 eV). Thus, the electron-transfer reduction becomes less favorable thermodynamically but more favorable kinetically with increasing donor ability of the axial ligands. The net effect of the axial ligands is the deceleration of the electron-transfer rate in the order of 1-NCCH3 > 1-OOCCF3 > 1-N3. In sharp contrast to this, the rates of the proton-coupled electron-transfer reactions of 1-X are markedly accelerated in the presence of an acid in the opposite order: 1-NCCH3 < 1-OOCCF3 <1-N3. Such contrasting effects of the axial ligands on the electron-transfer and proton-coupled electron-transfer reactions of nonheme oxoiron(IV) complexes are discussed in light of the counterintuitive reactivity patterns observed in the oxo transfer and hydrogen-atom abstraction reactions by nonheme oxoiron(IV) complexes (Sastri et al. Proc. Natl. Acad. Sci. U.S.A. 2007, 104, 19 181–19 186).
机译:使用[FeIV(O)ACHTUNGTRENUNG(tmc)(X)] n +(1-X)研究了轴向配体对单核非血红素氧铁(IV)配合物的电子转移和质子-偶极电子转移反应的影响轴向配体,其中tmc是1,4,8,11-四甲基-1,4,8,11-四氮杂环十四烷,X是CH3CN(1-NCCH3),CF3COO-(1-OOCCF3)或N3-(1- N3)和二茂铁衍生物作为电子给体。随着轴向配体的结合强度增加,1-X的单电子还原电势(Ered,V对饱和甘汞电极(SCE))通过在电极中供电子更多的轴向配体的结合而更加负移。 1-NCCH3(0.39)> 1-OOCCF3(0.13)> 1-N3(0.05 V)的顺序。根据马库斯电子转移理论分析了从二茂铁衍生物到1-X的电子转移速率常数,以确定电子转移的重组能(l)。 l值按以下顺序递减:1-NCCH3(2.37)> 1-OOCCF3(2.12)> 1-N3(1.97 eV)。因此,随着轴向配体的供体能力的提高,电子传递还原在热力学上变得不那么有利,而在动力学上变得更有利。轴向配体的净效应是电子传输速率的减速,顺序为1-NCCH3> 1-OOCCF3> 1-N3。与此形成鲜明对比的是,在相反的酸存在下,1-X的质子偶联电子转移反应的速率显着加快:1-NCCH3 <1-OOCCF3 <1-N3。鉴于非血红素氧铁的氧转移和氢原子抽象反应中观察到的反直觉反应模式,讨论了轴向配体对非血红素氧铁(IV)配合物的电子转移和质子偶联电子转移反应的这种对比作用。 (IV)配合物(Sastri等人,美国国家科学院学报,2007,104,19 181–19 186)。

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