首页> 外文学位 >Achiral and chiral, C2-symmetric bicyclic guanidinates based on 1,5,7-triazabicyclo[4.4.0.]dec-5-ene as ligands in high- and mid-valent early transition metal chemistry.
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Achiral and chiral, C2-symmetric bicyclic guanidinates based on 1,5,7-triazabicyclo[4.4.0.]dec-5-ene as ligands in high- and mid-valent early transition metal chemistry.

机译:基于1,5,7-三氮杂双环[4.4.0。] dec-5-烯作为高和中价早期过渡金属化学中的配体的手性和手性C2对称双环胍盐。

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摘要

The syntheses of achiral and chiral, C2-symmetric bicyclic guanidine derivatives of 1,5,7-triazabicylo[4.4.0]dec-5-ene (hppH) are described.;Quantum mechanical MO calculations based on Spartan were performed in order to study the effects (electronic and steric) of substituents on the basicity of hppH derivatives. These calculations showed that substituting only one methyl group on each carbon next to the bridgehead nitrogen of hppH gives high basicity. Based on these calculations, syntheses of achiral (hpp*H, with four methyl groups) and chiral C2-symmetric (hpp'H, with two methyl groups) derivatives of hppH were developed based on cyclization of 1,5,9-triaminononanes with C1 reagents.;The synthesis of hpp*H started from commercially available ethyl cyanoacetate and was completed in six steps with 2.5% overall yield. The synthesis of the chiral, C2-symmetric hpp'H was carried out using L-alanine as the chiral precursor. The key step was the diastereoselective coupling of L-alaninol (derived from L-alanine) with commercially available hydroxyacetone via a reductive amination approach. An important step was successful diastereoselective resolution of N-benzyl-protected meso and C 2-symmetric aminodinitriles. Chiral hpp'H was synthesized in six steps starting from L-alaninol in 9% overall yield and was isolated as hpp'H 2+I-. Both hpp*H and hpp'H2 +I- were characterized by 1H and 13C NMR spectroscopy and high resolution mass spectrometry. hpp'H 2+I- was also characterized by single-crystal X-ray diffractometry.;The coordination chemistry of non-methylated hpp- with tantalum is described. The new tantalum complexes TaV(hpp)Cl 4, TaV(hpp)2Cl3, Cp*TaV(hpp)Cl 3 (Cp* = C5Me5) and Cp''TaV(hpp)Cl 3 (Cp'' = C5Me4Et) were synthesized. The first mid-valent hpp- complexes of tantalum, Cp*TaIV(hpp)Cl 2 and Cp''TaIV(hpp)Cl2, were obtained by reduction of (C5Me4R)Ta(hpp)Cl3 (R =Me, Et) or reaction of (C5Me4R)2Ta2(micro-Cl) 4 with (hpp)SiMe3. 1H NMR spectroscopy and comparative single-crystal X-ray diffractometry of these complexes is discussed.
机译:描述了1,5,7-三氮杂双[4.4.0] dec-5-ene(hppH)的非手性和手性,C2对称的双环胍衍生物的合成。基于Spartan的量子力学MO的计算是为了研究取代基对hppH衍生物碱性的影响(电子和空间)。这些计算表明,在hppH的桥头氮旁边,每个碳上仅取代一个甲基即可得到高碱性。基于这些计算,基于1,5,9-三氨基壬烷的环化反应,开发了hppH的非手性(hpp * H,带有四个甲基)和手性C2对称(hpp'H,带有两个甲基)的衍生物。 C1试剂; hpp * H的合成从可商购的氰基乙酸乙酯开始,并分六步完成,总产率为2.5%。使用L-丙氨酸作为手性前体进行手性C 2对称的hpp'H的合成。关键步骤是通过还原胺化方法将L-丙氨醇(衍生自L-丙氨酸)与市售羟丙酮进行非对映选择性偶联。重要的一步是成功的N-苄基保护的内消旋和C 2对称氨基二腈的非对映选择性拆分。从L-丙氨醇开始,以6个步骤合成手性hpp'H,总产率为9%,并分离为hpp'H 2 + I-。 hpp * H和hpp'H2 + I-均通过1H和13C NMR光谱法和高分辨率质谱法表征。 hpp'H 2 + I-也用单晶X射线衍射法表征。;描述了非甲基化hpp-与钽的配位化学。合成了新的钽络合物TaV(hpp)Cl 4,TaV(hpp)2Cl3,Cp * TaV(hpp)Cl 3(Cp * = C5Me5)和Cp''TaV(hpp)Cl 3(Cp''= C5Me4Et) 。通过还原(C5Me4R)Ta(hpp)Cl3(R = Me,Et)或还原得到钽的第一批中等价的hpp-络合物Cp * TaIV(hpp)Cl 2和Cp''TaIV(hpp)Cl2。 (C5Me4R)2Ta2(micro-Cl)4与(hpp)SiMe3的反应讨论了这些配合物的1 H NMR光谱和比较单晶X射线衍射。

著录项

  • 作者

    Mohammad, Adil.;

  • 作者单位

    The University of Iowa.;

  • 授予单位 The University of Iowa.;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 344 p.
  • 总页数 344
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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