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Novel reactivity at iron centers supported by poly(phosphino)borate ligands.

机译:在聚(膦)硼酸酯配体的支持下,在铁中心具有新的反应活性。

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摘要

The reactivity of the iron(II) alkyl species [PhBP iPr3]FeMe ([PhBP iPr3] = PhB(CH2P iPr2)3-) towards Si-H bonds is presented. Reaction of [PhBPi Pr3]FeMe with primary aryl silanes results in the unusual eta 3 silane adducts [PhBPiPr 3]Fe(H)(eta3-H2SiMeR). X-ray crystallography, Mossbauer spectroscopy and theoretical calculations confirm this structural assignment, however, solution NMR experiments suggest a degree of fluxionality in solution.; Low valent, tris(phosphino)borate iron platforms have been shown to facilitate the activation of white phosphorus, P4. The iron(I) precursors {lcub}[PhBPiPr3]Fe{rcub} 2(mu-N2) and [PhBPPh3]Fe(PPh 3) react with P4 to quantitatively generate {lcub}[PhBP iPr3]Fe{rcub}2(mu-P 4) and {lcub}[PhBPPh3]Fe{rcub}2(mu-P 4), respectively. These unique iron(II) dimers bridged by square P 42- units have been characterized structurally and spectroscopically and their reactivity has been examined. A simplified electronic structure calculation is presented to aid in discussion of bonding within these complexes.; Motivated by the versatility of the tris(phosphino)borate ligands, a new family of tripodal hybrid bis(phosphino)pyrazolylborate ligands, [PhBP tBu2(pz')]- ([PhBP tBu2(pz')]- = PhB(CH 2PtBu2)2(pz') -), has been prepared and characterized. The synthesis, spectroscopy and solid state structures of four-coordinate, pseudo-tetrahedral iron(II) and cobalt(II) halide complexes supported by these ligands is presented. To compare the electron-releasing ability of these ligands with their [PhBP R3] analogues, the cyclic voltammetry of these complexes is introduced. Potential routes to a terminal cobalt or iron nitride complex via extrusion of N2 from coordinated azide and metathesis with the N-atom transfer reagent Li(dbabh) are investigated.; Reduction of the [PhBPtBu 2(pz')]MX halide complexes in the presence of excess phosphine generates low valent [PhBPtBu2(pz')]M I(PMe3) precursors. These precursors react with organic azides to generate cobalt(III) and iron(III) imides. Initial reactivity studies indicate that these imides are more moderately more reactive than the corresponding tris(phosphino)borate complexes. The electrochemistry of the [PhBP tBu2(pz')]FeIII(NR) imides features a quasi-reversible to fully reversible oxidation event, dependent on choice of pyrazolyl substituents and scan rate. This oxidation can be achieved chemically to generate the isolable cationic iron(IV) imides, [PhBP tBu2(pz')]FeIV(NR) +. The structural and spectroscopic characterization of these highly unusual complexes is discussed.
机译:提出了铁(II)烷基物种[PhBP iPr3] FeMe([PhBP iPr3] = PhB(CH2P iPr2)3-)对Si-H键的反应性。 [PhBPiPr3] FeMe与伯芳基硅烷的反应导致异常的eta 3硅烷加合物[PhBPiPr 3] Fe(H)(eta3-H2SiMeR)。 X射线晶体学,Mossbauer光谱学和理论计算证实了这种结构分配,但是,溶液NMR实验表明溶液中具有一定程度的流动性。低价的三(膦)硼酸铁平台已被证明可以促进白磷P4的活化。铁(I)前体{lcub} [PhBPiPr3] Fe {rcub} 2(mu-N2)和[PhBPPh3] Fe(PPh 3)与P4反应以定量生成{lcub} [PhBP iPr3] Fe {rcub} 2( mu-P 4)和{lcub} [PhBPPh3] Fe {rcub} 2(mu-P 4)。这些独特的由方形P 42-单元桥接的铁(II)二聚体已在结构和光谱上进行了表征,并对其反应性进行了研究。提出了简化的电子结构计算,以帮助讨论这些复合物中的键合。受三(膦)硼酸酯配体的多功能性的启发,一个新的三脚架杂化双(膦)吡唑基硼酸酯配体家族[PhBP tBu2(pz')]-([PhBP tBu2(pz')]-= PhB(CH 2PtBu2 )2(pz')-),已经制备并表征。介绍了由这些配体支撑的四配位准四面体铁(II)和钴(II)卤化物配合物的合成,光谱和固态结构。为了比较这些配体与其[PhBP R3]类似物的电子释放能力,引入了这些络合物的循环伏安法。研究了从配位叠氮化物中挤出N2并与N原子转移试剂Li(dbabh)复分解生成最终钴或氮化铁络合物的潜在途径。在过量膦存在下还原[PhBPtBu 2(pz')] MX卤化物络合物会生成低价的[PhBPtBu2(pz')] M I(PMe3)前体。这些前体与有机叠氮化物反应生成钴(III)和铁(III)酰亚胺。最初的反应性研究表明,这些酰亚胺比相应的三(膦)硼酸酯配合物反应性更高。 [PhBP tBu2(pz')] FeIII(NR)酰亚胺的电化学特征为准可逆到完全可逆的氧化过程,具体取决于吡唑基取代基的选择和扫描速率。该氧化可通过化学方法实现,以生成可分离的阳离子铁(IV)酰亚胺[PhBP tBu2(pz')] FeIV(NR)+。这些高度不寻常的配合物的结构和光谱表征进行了讨论。

著录项

  • 作者

    Thomas, Christine Marie.;

  • 作者单位

    California Institute of Technology.;

  • 授予单位 California Institute of Technology.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2006
  • 页码 196 p.
  • 总页数 196
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
  • 关键词

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