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Antioxidants (Basel). 2022 Nov 2;11(11):2173. doi: 10.3390/antiox11112173.
2
Synthesis, characterization, and reactivity of oxoiron(IV) porphyrin π-cation radical complexes bearing cationic N-methyl-2-pyridinium group.带有阳离子N-甲基-2-吡啶鎓基团的氧代铁(IV)卟啉π-阳离子自由基配合物的合成、表征及反应活性
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3
Significant Solvent Effect on Reactivity of Oxoiron(IV) Porphyrin π-Cation Radical Complex: Activation in -Alkane Solvent.溶剂对氧代铁(IV)卟啉π-阳离子自由基配合物反应性的显著影响:在 - 烷溶剂中的活化。
Inorg Chem. 2021 Jul 5;60(13):9243-9247. doi: 10.1021/acs.inorgchem.1c01018. Epub 2021 Jun 14.
4
-Substitution Activates Oxoiron(IV) Porphyrin π-Cation Radical Complex More Than Pyrrole-β-Substitution for Atom Transfer Reaction.-取代比吡咯β位取代更能激活双氧桥铁(IV)卟啉π-阳离子自由基配合物的原子转移反应。
Inorg Chem. 2021 Mar 1;60(5):3207-3217. doi: 10.1021/acs.inorgchem.0c03548. Epub 2021 Feb 15.
5
Iron(III) 5,15-Diazaporphyrin Catalysts for the Direct Oxidation of C(sp)-H Bonds.用于直接氧化C(sp)-H键的铁(III) 5,15-二氮杂卟啉催化剂
Inorg Chem. 2020 Nov 2;59(21):15751-15756. doi: 10.1021/acs.inorgchem.0c02166. Epub 2020 Oct 14.
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Small Reorganization Energy for Ligand-Centered Electron-Transfer Reduction of Compound I to Compound II in a Heme Model Study.血红素模型研究中配体中心电子转移将化合物I还原为化合物II的小重组能
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7
Direct Observation of Primary C-H Bond Oxidation by an Oxido-Iron(IV) Porphyrin π-Radical Cation Complex in a Fluorinated Carbon Solvent.在氟化碳溶剂中,通过氧化态铁(IV)卟啉π-自由基阳离子配合物直接观察到 C-H 键的氧化。
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8
Experimental and theoretical studies of the porphyrin ligand effect on the electronic structure and reactivity of oxoiron(iv) porphyrin π-cation-radical complexes.卟啉配体对氧代铁(IV)卟啉π-阳离子自由基配合物电子结构和反应性影响的实验和理论研究。
J Biol Inorg Chem. 2019 Jun;24(4):483-494. doi: 10.1007/s00775-019-01664-3. Epub 2019 May 21.
9
Factors Affecting Hydrogen Atom Transfer Reactivity of Metal-Oxo Porphyrinoid Complexes.影响金属氧代卟啉配合物氢原子转移反应活性的因素。
Acc Chem Res. 2018 Nov 20;51(11):2641-2652. doi: 10.1021/acs.accounts.8b00414. Epub 2018 Nov 7.
10
Oxygen Activation and Radical Transformations in Heme Proteins and Metalloporphyrins.血红素蛋白和金属卟啉中的氧活化和自由基转化。
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控制合成化合物-I类似物反应活性的因素。

Factors controlling the reactivity of synthetic compound-I Analogs.

作者信息

Thomas Jithin, Goldberg David P

机构信息

Department of Chemistry, The Johns Hopkins University, 3400N. Charles Street, Baltimore, Maryland 21218, USA.

出版信息

J Porphyr Phthalocyanines. 2023 Nov;27(11):1489-1501. doi: 10.1142/s1088424623300136.

DOI:10.1142/s1088424623300136
PMID:39132380
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11308481/
Abstract

A high-valent iron(IV)-oxo porphyrin radical cation (Fe(O)(porph) serves as a key, reactive intermediate for a range of heme enzymes, including cytochrome P450 (CYP), horseradish peroxidase (HRP), and catalase (CAT). Synthetic analogs of this intermediate, known as Compound-I (Cpd-I) in the heme enzyme literature, have been generated with different tetrapyrrolic, macrocyclic ligands, including porphyrin derivatives, and the closely related ring-contracted macrocycles, corroles and corrolazines. These synthetic analogs have been useful for assigning and understanding structural and spectroscopic features and examining the reactivity of Cpd-I-like species in controlled and well-defined environments. This review focuses on summarizing recent developments in the synthesis and reactivity of high-valent iron-oxo porphyrinoid complexes in two main classes of reactions, proton-coupled electron transfer (PCET) and oxygen atom transfer (OAT). The relationship between the structure of the complexes and their reactivity is emphasized, including the influence of axial ligation and peripheral macrocyclic substitution, as well as the effects of solvent and secondary coordination spheres on the reactivity of the Cpd-I analogs. In bringing together the latest findings on Cpd-I analogs, this review intends to broaden our current understanding of the factors that control the stability and reactivity of Cpd-I species. This new knowledge should, in turn, point toward new synthetic strategies for constructing catalysts that rely on Cpd-I-like reactive intermediates.

摘要

高价铁(IV)-氧代卟啉自由基阳离子(Fe(O)(porph))是一系列血红素酶的关键反应中间体,包括细胞色素P450(CYP)、辣根过氧化物酶(HRP)和过氧化氢酶(CAT)。这种中间体的合成类似物,在血红素酶文献中被称为化合物I(Cpd-I),已通过不同的四吡咯大环配体生成,包括卟啉衍生物以及密切相关的环收缩大环、corrole和corrolazine。这些合成类似物有助于确定和理解结构及光谱特征,并在可控且明确的环境中研究类Cpd-I物种的反应性。本综述重点总结了高价铁-氧代卟啉类配合物在质子耦合电子转移(PCET)和氧原子转移(OAT)这两类主要反应中的合成及反应性的最新进展。强调了配合物结构与其反应性之间的关系,包括轴向配位和外围大环取代的影响,以及溶剂和二级配位球对Cpd-I类似物反应性的影响。通过汇集关于Cpd-I类似物的最新发现,本综述旨在拓宽我们目前对控制Cpd-I物种稳定性和反应性因素的理解。反过来,这些新知识应指向构建依赖类Cpd-I反应中间体的催化剂的新合成策略。