首页> 外文OA文献 >A Study Of Iron-Catalyzed Reductive Cyclizations Of 1,6- Dienes, 1,6-Enynes, 1,6-Diynes: Reactions That Proceed Via Metallocyclic Intermediates.
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A Study Of Iron-Catalyzed Reductive Cyclizations Of 1,6- Dienes, 1,6-Enynes, 1,6-Diynes: Reactions That Proceed Via Metallocyclic Intermediates.

机译:铁催化的1,6-二烯,1,6-烯,1,6-二炔的铁催化还原环化研究:通过金属环中间体进行的反应。

摘要

A series of cyclization reactions catalyzed by (RPDI)M(N2)2 (M = Fe, Co; R PDI = 2,6-(2',6'-R2-C6H3N=CMe)2C5H3N; R= iPr, Me; tripsPDI = 2,6-(2',4',6'-iPr3- C6H3N=CMe)2C5H3N) was presented. The first reaction was a novel iron-catalyzed, hydrogen-mediated cyclization of 1,6-enynes and 1,6-diynes. This methodology employed mild conditions (room temperature and four atmospheres of hydrogen) and exhibited broad substrate scope. The reaction mechanism was studied through stoichiometric reactions and various deuterium labeling experiments, which revealed that transfer hydrogenation from the ligand isopropyl group was involved in the rate limiting step. This presents a rare example of bis(imino)pyridine ligands as both redox-active and chemically-active. The second reaction studied was an extension of the unprecedented iron-catalyzed [2!+2!] cyclization of unactivated 1,6-dienes to prepare [3.2.0]bicycloheptanes. The substrate scope was expanded and novel reactivity was observed. When a less sterically demanding ligand framework, MePDI, and a less reducing catalyst, (iPrPDI)Co(N2), were used, a new product identified as an exomethylene-cyclopentane was observed. Higher temperatures favored the expected bicyclic product. The mechanism of the [2!+2!] cyclization was studied through a series of deuterium labeling experiments. It was determined through extensive deuterium scrambling that the reaction may be best described as a controlled radical reaction. The final study involved the preparation of relevant intermediates along the enyne and diyne cyclization. These iron-metallocyclopentanes were studied by preparation of (RPDI)Fe(biphenyl) and (RPDI)Fe(diyne) (R = iPr, Me; (biphenyl = 2,2'-C12H8); diyne = bis(2-butynyl)tosylamine) complexes, which were analyzed by single crystal X-ray diffraction and Mössbauer spectroscopy. The electronic structure of these intermediates suggest that cycloaddition of dienes, eynes, or diynes results in a one-electron reduction of the bis(imino)pyridine ligand and one electron oxidation of the iron-center. In the case of the (RPDI)Fe(biphenyl) and (RPDI)Fe(diyne) complexes, these ferric centers have been assigned as low spin. However, for the intermediates of the related diene and enyne cyclizations, the ferric center could have a different spin state, thus accounting for their inability to be isolated.
机译:(RPDI)M(N2)2(M = Fe,Co; R PDI = 2,6-(2',6'-R2-C6H3N = CMe)2C5H3N; R = iPr,Me;给出了行程PDI = 2,6-(2',4',6'-iPr3-C6H3N = CMe)2C5H3N)。第一个反应是新颖的铁催化的氢介导的1,6-烯和1,6-二炔的环化反应。该方法采用温和的条件(室温和四个大气压的氢气),并显示出较宽的底物范围。通过化学计量反应和各种氘标记实验研究了反应机理,结果表明限速步骤涉及配体异丙基的加氢转移。这提供了双(亚氨基)吡啶配体的罕见例子,其具有氧化还原活性和化学活性。研究的第二个反应是对未活化的1,6-二烯进行空前的铁催化[2!+2!]环化反应以制备[3.2.0]双环庚烷的扩展。扩大了底物范围,并观察到了新的反应性。当使用对空间要求不高的配体骨架MePDI和还原性较低的催化剂(iPrPDI)Co(N2)时,观察到一种新产物,被鉴定为外亚甲基-环戊烷。较高的温度有利于预期的双环产物。通过一系列氘标记实验研究了[2!+2!]环化的机理。通过广泛的氘加扰确定该反应可以最好地描述为受控自由基反应。最终研究涉及沿烯炔和二炔环化反应制备相关中间体。通过制备(RPDI)Fe(联苯)和(RPDI)Fe(二炔)(R = iPr,Me;(联苯= 2,2'-C12H8);二炔=双(2-丁炔基)来研究这些铁金属环戊烷甲苯磺胺)配合物,通过单晶X射线衍射和Mössbauer光谱分析。这些中间体的电子结构表明,二烯,炔或二炔的环加成导致双(亚氨基)吡啶配体的单电子还原和铁中心的一个电子氧化。在(RPDI)Fe(联苯)和(RPDI)Fe(二炔)配合物的情况下,这些铁心被指定为低自旋。然而,对于相关的二烯和烯炔环化的中间体,三价铁中心可能具有不同的自旋态,因此考虑到它们无法分离。

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    Sylvester Kevin;

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  • 年度 2011
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  • 正文语种 en_US
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