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Activation of Propargylic Alcohols by Piano-Stool Ruthenium Complexes Bearing Phosphoramidite Ligands.

机译:带有亚磷酰胺配体的钢琴凳钌配合物活化丙炔醇。

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摘要

Various piano-stool ruthenium complexes bearing phosphoramidite ligands have been synthesized and characterized spectroscopically and in some cases structurally. Reaction of phosphoramidite ligands 41 with an appropriate metal precursor gave new piano-stool ruthenium complexes [RuCl(L)(arene)(phosphoramidite)], where L = Cl, PPh3, or others. The novel complexes were tested for their ability to activate propargylic alcohols catalytically as well as stoichiometrically. Specifically, catalytic substitution of propargylic alcohols via allenylidene intermediates was envisioned. Stoichiometric reactions designed to form stable, isolable allenylidenes were sought as well.;eta6-p-cymene complexes of the type [RuCl2(eta6-p-cymene)(phosphoramidite)] (43, 45) activate propargylic alcohols in the reaction with carboxylic acids to form beta-oxo esters. The catalytic activity of the complexes is clearly related, in part, to the steric effects of the ligands with the more hindered complexes such as 43b outperforming their less sterically crowded counterparts. In these complexes the arene ligand has been shown to be labile, dissociating at elevated temperatures or after prolonged times in solution (CH2Cl2, cyclohexane) or in the solid state. The complexes overall were shown to be inactive in reactions involving allenylidene intermediates.;eta5-arene complexes of the type [CpRuCl(PPh3)(phosphoramidite)] (43) and [(Ind)RuCl(PPh3)(phosphoramidite)] ( 111) are viable complexes for the activation of propargylic alcohols as well. Upon coordination of a chiral phosphoramidite ligand a new stereocenter is formed at the metal. The diastereoselectivity of complex formation is highly dependent on the steric effects of the incoming phosphoramidite ligand. The best results were obtained for the complexes bearing the ligand 41b (69b, 111b), as they can be isolated in diastereomeric purity (111b forms as a single diastereomer). 111b forms stable allenylidenes [(Ind)Ru(PPh3)(41b)(=C=C=CR 1R2)]PF6 (116) in reaction with propargylic alcohols (5) after chloride abstraction using (Et3O)PF6 in CH2Cl2.;Bidentate phosphoramidite ligands utilizing a pyridyl moiety ( 135) can coordinate in a chelating fashion, favoring the double substitution due to entropic reasons. A potentially general synthetic route to this new class of ligands has been developed. The effectiveness of this method of electronic tuning is still uncertain, as the coordination chemistry of the analogous ligands is dissimilar for steric reasons. Synthesis of a small library of tuned, bidentate phosphoramidite ligands will give greater insight into the usefulness of this ligand class and will allow further tuning of the catalytic activity of the respective complexes.
机译:已经合成了各种带有亚磷酰胺配体的钢琴凳钌配合物,并在光谱学上和在某些情况下在结构上进行了表征。亚磷酰胺配体41与适当的金属前体的反应产生了新的钢琴凳形钌络合物[RuCl(L)(芳烃)(亚磷酰胺)],其中L = Cl,PPh 3或其他。测试了新型配合物催化和化学计量活化丙炔醇的能力。具体地,设想了经由亚烯基中间体催化取代炔丙醇。还寻求了设计成形成稳定的,可分离的烯基亚烷基的化学计量反应。[RuCl2(eta6-对伞花烃)(亚磷酰胺)] [43,45)型的eta6-对伞花烃络合物可活化炔丙醇与羧酸的反应酸形成β-氧代酸酯。配合物的催化活性显然与配位体的位阻效应有关,配体的受阻程度更高,例如43b,其配比在空间上拥挤程度较小。在这些络合物中,芳烃配体不稳定,在升高的温度下或在溶液(CH2Cl2,环己烷)或固态下长时间分解后会分解。总体而言,该配合物在涉及烯基亚烷基中间体的反应中无活性。[CpRuCl(PPh3)(phosphoramidite)](43)和[(Ind)RuCl(PPh3)(phosphoramidite)]类型的eta5-芳烃配合物(111)同样是用于活化炔丙醇的可行复合物。通过手性亚磷酰胺配体的配位,在金属上形成了新的立体中心。络合物形成的非对映选择性在很大程度上取决于引入的亚磷酰胺配体的空间效应。对于带有配体41b(69b,111b)的配合物,可获得最佳结果,因为它们可以非对映体纯度分离(111b为单一非对映体形式)。 111b在CH2Cl2中使用(Et3O)PF6提取氯化物后,与炔丙醇(5)反应形成稳定的烯基[[Ind)Ru(PPh3)(41b)(= C = C = CR 1R2)] PF6(116)。利用吡啶基部分(135)的亚磷酰胺配体可以螯合的方式配位,由于熵的原因有利于双取代。已经开发出可能的合成这类新配体的途径。由于空间原因,类似配体的配位化学不相同,因此这种电子调谐方法的有效性仍不确定。合成一个小的调谐的二齿亚磷酰胺配体库将使您对该类配体的有用性有更深入的了解,并将进一步调节各个配合物的催化活性。

著录项

  • 作者

    Costin, Stephen.;

  • 作者单位

    University of Missouri - Saint Louis.;

  • 授予单位 University of Missouri - Saint Louis.;
  • 学科 Chemistry Inorganic.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 199 p.
  • 总页数 199
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 土壤学;
  • 关键词

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