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The preparation and use of metal salen complexes derived from cyclobutane diamine.

机译:衍生自环丁烷二胺的金属萨伦配合物的制备和使用。

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摘要

The helix is an important chiral motif in nature, there is increasing development in field of helical transition metal complexes and related supramolecular structures. Hence, the goals of this work are to apply the principles of helicity in order to produce metal complexes with predictable molecular shapes and to study their properties as asymmetric catalysts.;Computational studies suggest that the (1R,2 R)-cyclobutyldiamine unit can produce highly twisted salen complexes with a large energy barrier between the M and P helical forms. To test this prediction, the tartrate salt of (1R,2R)-cyclobutyldiamine was synthesized and condensed with a series of saliclaldehydes to produce novel salen ligands. The salicylaldehydes chosen have extended phenanthryl or benz[a]anthryl sidearms to encourage formation of helical coordination complexes. These ligands were metallated with zinc, iron and manganese salts to produce salen metal complexes which were characterized by NMR analysis, high-resolution mass spectrometry, and IR spectroscopy.;A second ligand type, neutral bis(pyridine-imine) has also been synthesized from (1R,2R)-cyclobutyldiamine and quinolylaldehydes. The synthesis of bis(pyridine-imine) ligands was conducted using greener method, solvent assisted grinding. These ligands, in-situ with nickel metal salts, showed good catalytic activity for asymmetric Diels-Alder reactions.;The third ligand type studied was chiral acid-functionalized Schiff-base ligands. These were synthesized by the condensation of 3-formyl-5-methyl salicylic acid and (1R,2R)-cyclobutyldiamine. With this type of ligand, there is possibility of producing both mono and dinuclear metal complexes. In our studies, we were only able to synthesize mononuclear complexs. These were tested as catalysts for asymmetric direct Mannich-type reaction, but were found to be ineffective.
机译:螺旋是自然界中重要的手性基序,在螺旋过渡金属配合物和相关的超分子结构领域中,发展越来越大。因此,这项工作的目的是应用螺旋原理以制备具有可预测分子形状的金属配合物并研究其作为不对称催化剂的性能。;计算研究表明,(1R,2 R)-环丁基二胺单元可以产生高度扭曲的塞伦络合物,在M和P螺旋形式之间具有较大的能垒。为了验证该预测,合成了(1R,2R)-环丁基二胺的酒石酸盐,并与一系列水杨醛缩合生成新的salen配体。所选择的水杨醛具有延伸的菲或苯并[a]蒽侧基,以促进螺旋配位配合物的形成。将这些配体用锌,铁和锰盐金属化以制备Salen金属络合物,并通过NMR分析,高分辨率质谱和IR光谱对其进行表征。;还合成了第二种配体类型中性双(吡啶-亚胺) (1R,2R)-环丁基二胺和喹啉醛。双(吡啶-亚胺)配体的合成是采用绿色方法,溶剂辅助研磨进行的。这些与镍金属盐原位结合的配体对不对称Diels-Alder反应具有良好的催化活性。研究的第三种配体类型是手性酸官能化的席夫碱配体。这些是通过3-甲酰基-5-甲基水杨酸和(1R,2R)-环丁基二胺的缩合反应合成的。使用这种类型的配体,有可能同时生产单核和双核金属配合物。在我们的研究中,我们只能合成单核复合物。这些被测试为不对称直接曼尼希型反应的催化剂,但是发现是无效的。

著录项

  • 作者

    Patil, Smita.;

  • 作者单位

    Kansas State University.;

  • 授予单位 Kansas State University.;
  • 学科 Chemistry Inorganic.;Engineering Materials Science.;Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 150 p.
  • 总页数 150
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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