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赤道面共配体对LFeOIPh反应活性的影响

Influence of Equatorial Co-Ligands on the Reactivity of LFeOIPh.

作者信息

Lakk-Bogáth Dóra, Pintarics Dénes, Török Patrik, Kaizer József

机构信息

Research Group of Bioorganic and Biocoordination Chemistry, University of Pannonia, H-8201 Veszprém, Hungary.

出版信息

Molecules. 2023 Dec 21;29(1):58. doi: 10.3390/molecules29010058.

Abstract

Previous biomimetic studies clearly proved that equatorial ligands significantly influence the redox potential and thus the stability/reactivity of biologically important oxoiron intermediates; however, no such studies were performed on FeOIPh species. In this study, the influence of substituted pyridine co-ligands on the reactivity of iron(III)-iodosylbenzene adduct has been investigated in sulfoxidation and epoxidation reactions. Selective oxidation of thioanisole, -cyclooctene, and - and -stilbene in the presence of a catalytic amount of Fe(PBI) with PhI(OAc) provide products in good to excellent yields through an FeOIPh intermediate depending on the co-ligand (4R-Py) used. Several mechanistic studies were performed to gain more insight into the mechanism of oxygen atom transfer (OAT) reactions to support the reactive intermediate and investigate the effect of the equatorial co-ligands. Based on competitive experiments, including a linear free-energy relationship between the relative reaction rates (log) and the (4R-Py) parameters, strong evidence has been observed for the electrophilic character of the reactive species. The presence of the [(PBI)(4R-Py)FeOIPh] intermediates and the effect of the co-ligands was also supported by UV-visible measurements, including the color change from red to green and the hypsochromic shifts in the presence of co-ligands. This is another indication that the title iron(III)-iodosylbenzene adduct is able to oxygenate sulfides and alkenes before it is transformed into the oxoiron form by cleavage of the O-I bond.

摘要

先前的仿生研究清楚地证明,赤道配体对氧化还原电位有显著影响,进而影响生物重要的氧铁中间体的稳定性/反应活性;然而,尚未对FeOIPh物种进行此类研究。在本研究中,研究了取代吡啶共配体对铁(III)-碘苯加合物在硫氧化和环氧化反应中反应活性的影响。在催化量的Fe(PBI)与PhI(OAc)存在下,硫代苯甲醚、环辛烯以及反式-和顺式-二苯乙烯的选择性氧化通过FeOIPh中间体提供了产率良好至优异的产物,这取决于所使用的共配体(4R-Py)。进行了多项机理研究,以更深入地了解氧原子转移(OAT)反应的机理,以支持反应中间体并研究赤道共配体的影响。基于竞争实验,包括相对反应速率(log)与 (4R-Py)参数之间的线性自由能关系,已观察到有力证据证明反应物种具有亲电特性。[(PBI)(4R-Py)FeOIPh]中间体的存在以及共配体的影响也得到了紫外可见光谱测量的支持,包括颜色从红色变为绿色以及在共配体存在下的紫移。这是另一个迹象,表明标题中的铁(III)-碘苯加合物在通过O-I键断裂转化为氧铁形式之前能够氧化硫化物和烯烃。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e01f/10779584/bfa8bf0a7fd2/molecules-29-00058-sch001.jpg

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