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Chemistry of PNP bis(phosphide) pincer ligands and palladium(ii) dimers as robust, versatile precatalysts for olefin isomerization, oligomerization, and oxidation.

机译:PNP双(磷)钳形配体和钯(ii)二聚体的化学作用,是用于烯烃异构化,低聚和氧化的强力,通用型预催化剂。

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摘要

The first half of this thesis details the synthesis and coordination chemistry of a very unusual pyridine-linked bis(secondary phosphine) pincer ligand system. Despite the highly nucleophilic phosphide donors, this dianionic system is an unexpectedly poor pincer ligand. Crystallographic and DFT studies reveal that both phosphide→metal σ- and π-bonding is compromised by long metal-phosphorus bonds, which result in significant distortions to the chelate ring. The neutral ligand coordinates readily κ2 (via phosphines) to late metals, such as palladium(II), affording P-chirogenic diastereomers. Crystallographic and spectroscopic analysis of a series of palladium(II) dihalides stabilized by this bis(phosphine) indicate that one diastereomer is enthalpically favored, while the other more structurally versatile diastereomer is favored entropically. There is also evidence of an interesting phosphine epimerization pathway assisted by the non-coordinated pyridine ring.;Ethylene polymerization and ethylene/1-hexene copolymerization activities of several zirconium(IV) and vanadium(III) polymerization precatalysts supported by heterocycle-linked bis(phenolate) ligands are also discussed. Activities as high as 106 g PE/(mol•h) were observed, but only the vanadium catalyst incorporates comonomer, albeit with low efficiency (<1 mol%).;Finally, catalytic applications of air- and water-tolerant bis(&mgr;-hydroxy) palladium(II) dimers have been investigated. Mechanistic studies show that this precatalyst can oxygenate olefins via a Wacker-type mechanism upon dimer dissociation. In the absence of stoichiometric oxidant, the resulting palladium(II) hydride intermediate can then isomerize and oligomerize olefins with turnover numbers at room temperature as high as 2100/h and 600/h, respectively. We also show that the catalyst is insensitive to water and air, so that olefin isomerization and oligomerization can be carried out on the benchtop in the absence of activators. In the presence of excess tert-butylhydroperoxide, Wacker-type behavior is favored, and neither isomerization nor oligomerization is observed. These dimers can also catalyze the aerobic dehydrogenation of cyclohexene to benzene with relatively low turnover numbers (1/h). Nevertheless, mechanistic studies indicate a C-H activation/β-hydride elimination sequence that does not involve an allylic-activated species.
机译:本文的前半部分详细介绍了一种非常不寻常的吡啶连接的双(仲膦)钳式配体系统的合成和配位化学。尽管有高度亲核的磷供体,但该双阴离子系统是出乎意料的不良钳位配体。晶体学和DFT研究表明,磷化物→金属的σ键和π键都受到长的金属磷键的损害,这会导致螯合环发生明显变形。中性配体易于将κ2(通过膦)配位至晚金属(例如钯(II)),从而提供P-手性非对映异构体。对该双(膦)稳定的一系列二卤化钯(II)的晶体学和光谱分析表明,一种非对映异构体在焓上是有利的,而另一种在结构上更通用的非对映异构体在熵上是有利的。也有证据表明,在非配位吡啶环的辅助下,膦的差向异构化途径十分有趣。;几种杂环连接的双(Z)载体上的锆(IV)和钒(III)聚合前催化剂的乙烯聚合和乙烯/ 1-己烯共聚活性还讨论了酚盐)配体。观察到活性高达106 g PE /(mol•h),但只有钒催化剂掺入了共聚单体,尽管效率较低(<1 mol%)。最后,耐空气和耐水的bis(&mgr)的催化应用;-羟基)钯(II)二聚体已被研究。机理研究表明,该预催化剂可在二聚体离解时通过Wacker型机理氧化烯烃。在不存在化学计量的氧化剂的情况下,所得的氢化钯(II)中间体随后可以将室温下周转数分别高达2100 / h和600 / h的烯烃异构化和低聚。我们还表明该催化剂对水和空气不敏感,因此烯烃异构化和低聚反应可在不存在活化剂的情况下在工作台上进行。在过量的叔丁基氢过氧化物的存在下,Wacker型行为是有利的,并且未观察到异构化或低聚。这些二聚体还可以以较低的周转数(1 / h)催化环己烯的好氧脱氢为苯。然而,机理研究表明,C-H活化/β-氢化物消除序列不涉及烯丙基活化物种。

著录项

  • 作者

    Winston, Matthew S.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Chemistry Inorganic.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2013
  • 页码 287 p.
  • 总页数 287
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:40:44

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