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由五吡啶配体支撑的水溶性铁(IV)-氧配合物:轴向配体对氢原子和氧原子转移反应活性的影响。

Water-Soluble Iron(IV)-Oxo Complexes Supported by Pentapyridine Ligands: Axial Ligand Effects on Hydrogen Atom and Oxygen Atom Transfer Reactivity.

作者信息

Chantarojsiri Teera, Sun Yujie, Long Jeffrey R, Chang Christopher J

机构信息

#Department of Chemistry and Biochemistry, Utah State University, Logan, Utah 84322, United States.

出版信息

Inorg Chem. 2015 Jun 15;54(12):5879-87. doi: 10.1021/acs.inorgchem.5b00658. Epub 2015 Jun 3.

Abstract

We report the photochemical generation and study of a family of water-soluble iron(IV)-oxo complexes supported by pentapyridine PY5Me2-X ligands (PY5Me2 = 2,6-bis(1,1-bis(2-pyridyl)ethyl)pyridine; X = CF3, H, Me, or NMe2), in which the oxidative reactivity of these ferryl species correlates with the electronic properties of the axial pyridine ligand. Synthesis of a systematic series of Fe(II)(L)(PY5Me2-X) complexes, where L = CH3CN or H2O, and characterizations by several methods, including X-ray crystallography, cyclic voltammetry, and Mössbauer spectroscopy, show that increasing the electron-donating ability of the axial pyridine ligand tracks with less positive Fe(III)/Fe(II) reduction potentials and quadrupole splitting parameters. The Fe(II) precursors are readily oxidized to their Fe(IV)-oxo counterparts using either chemical outer-sphere oxidants such as CAN (ceric ammonium nitrate) or flash-quench photochemical oxidation with Ru(bpy)3 as a photosensitizer and K2S2O8 as a quencher. The Fe(IV)-oxo complexes are capable of oxidizing the C-H bonds of alkane (4-ethylbenzenesulfonate) and alcohol (benzyl alcohol) substrates via hydrogen atom transfer (HAT) and an olefin (4-styrenesulfonate) substrate by oxygen atom transfer (OAT). The Fe(IV)(O)(PY5Me2-X) derivatives with electron-poor axial ligands show faster rates of HAT and OAT compared to their counterparts supported by electron-rich axial donors, but the magnitudes of these differences are relatively modest.

摘要

我们报道了由五吡啶PY5Me2-X配体(PY5Me2 = 2,6-双(1,1-双(2-吡啶基)乙基)吡啶;X = CF3、H、Me或NMe2)支撑的一系列水溶性铁(IV)-氧配合物的光化学生成及研究,其中这些铁酰基物种的氧化反应活性与轴向吡啶配体的电子性质相关。一系列Fe(II)(L)(PY5Me2-X)配合物(其中L = CH3CN或H2O)的合成以及通过多种方法进行的表征,包括X射线晶体学、循环伏安法和穆斯堡尔光谱法,表明轴向吡啶配体供电子能力的增强与Fe(III)/Fe(II)还原电位和四极分裂参数的正性降低相关。使用化学外层氧化剂如硝酸铈铵(CAN)或用Ru(bpy)3作为光敏剂和K2S2O8作为猝灭剂的闪光猝灭光化学氧化方法,可将Fe(II)前体容易地氧化为其对应的Fe(IV)-氧配合物。Fe(IV)-氧配合物能够通过氢原子转移(HAT)氧化烷烃(4-乙基苯磺酸盐)和醇(苄醇)底物的C-H键,并通过氧原子转移(OAT)氧化烯烃(4-苯乙烯磺酸盐)底物。与由富电子轴向供体支撑的对应物相比,具有贫电子轴向配体的Fe(IV)(O)(PY5Me2-X)衍生物显示出更快的HAT和OAT速率,但这些差异的幅度相对较小。

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