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Design, synthesis and applications of tetradentate transition metal complexes towards asymmetric alkylations.

机译:四齿过渡金属配合物向不对称烷基化的设计,合成和应用。

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摘要

Controlling the absolute stereochemistry of molecules is a major challenge to contemporary chemists. Achieving high enantioselectivity with catalytic amounts of a chirality transfer (or inducing) agent, and the ease of regenerating such catalysts is yet another challenge. Due to the involvement of various transition metal complexes, the relatively young field of enantioselective catalysis has emerged as a powerful tool for organic chemistry.; In our efforts towards the synthesis of a universal catalyst , O'Donnell Schiff base derived tetradentate ligands were shown to catalyze dialkylzinc additions to aldehydes in high selectivity. The three pot synthesis of bifurcated dipeptides in very good yields and the mechanistic aspects of diethylzinc additions to aromatic aldehydes are described in this dissertation. The chiral Lewis acidic behavior of these ligands was supported by a mechanistic study done examining the nonlinear effect. Unlike bidentate ligands such as (-)-3-exo-N,N-dimethylaminoisoborneol (DAIB), the tetradentate ligands in this study show strictly linear behavior. Also, the linear free energy relationships studied by observing the enantioselectivity with respect to electron donating or withdrawing substituents on the benzaldehyde substrates supported a Lewis acid role for the zinc complexes. A negative slope was obtained when ee's were plotted against sigma values of the substituted benzaldehydes.; Since they bind to various bivalent transition metal cations, these ligands can be viewed as privileged structures, and may potentially become catalysts for various asymmetric reactions. As catalyst screening can be greatly facilitated by heterogeneous catalysis, solid phase ligands were synthesized using Wang and Merrifield resin supports. The synthetic methodology was developed using a diarylketimine linker with the aid of on-bead characterization techniques such as 13C NMR and UV-VIS spectroscopy.; The ligands were shown to asymmetrically catalyze the alkenylzinc additions to aromatic aldehydes. In situ generation of alkenylzinc reagents by boron to zinc transmetalation followed by the addition to benzaldehyde in the presence chiral zinc complexes resulted in enantiomerically enriched allylic alcohols. The preliminary results for this transformation resulted in 3:1 selectivity in favor of S-isomer.
机译:控制分子的绝对立体化学是当代化学家的主要挑战。用催化量的手性转移(或诱导)剂实现高对映选择性以及使这类催化剂易于再生是另一挑战。由于各种过渡金属络合物的参与,相对年轻的对映选择性催化领域已成为有机化学的有力工具。在我们努力合成通用催化剂的过程中,O'Donnell Schiff碱衍生的四齿配体显示出可以高选择性催化醛中二烷基锌的加成反应。本论文描述了分叉的二肽的三锅合成,收率很高,而且在芳香醛中添加二乙基锌的机理也有所描述。这些配体的手性路易斯酸性行为得到了研究非线性效应的机理研究的支持。与双齿配体如(-)-3-exo-N,N-二甲基氨基异冰片醇(DAIB)不同,本研究中的四齿配体显示出严格的线性行为。而且,通过观察相对于苯甲醛底物上给电子或吸电子取代基的对映选择性研究的线性自由能关系支持了锌络合物的路易斯酸作用。当ee相对于取代的苯甲醛的sigma值作图时,获得了负斜率。由于它们与各种二价过渡金属阳离子结合,因此这些配体可被视为特权结构,并可能成为各种不对称反应的催化剂。由于非均相催化可大大促进催化剂筛选,因此使用Wang和Merrifield树脂载体合成了固相配体。合成方法是使用二芳基酮亚胺连接剂并借助磁珠表征技术(例如13C NMR和UV-VIS光谱学)开发的。所述配体显示出不对称地催化烯基锌加成到芳族醛上。通过硼到锌的金属转移原位生成烯基锌试剂,然后在存在手性锌络合物的情况下将其添加到苯甲醛中,得到对映体富集的烯丙醇。该转化的初步结果导致有利于S-异构体的3:1选择性。

著录项

  • 作者

    Tadikonda, Udaya Bhaskar.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 230 p.
  • 总页数 230
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 有机化学;
  • 关键词

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