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Stereochemistry of small molecules: Configurational and conformational control.

机译:小分子的立体化学:构象和构象控制。

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摘要

Stereochemistry is important aspect of chemistry that customarily includes the study of the relative spatial arrangement of atoms within molecules ( static stereochemistry), and the study of the stereochemical requirements and outcomes of chemical reactions (dynamic stereochemistry). These two branches complement each other in modern stereochemistry.; Chiral organometallics feature prominently in organic synthesis as reactive intermediates. The possibility of exploring their stereochemistry in synthesis is associated with the configurational stability of the metal-bearing stereogenic center. We were interested in the configurational stability of lithiated and magnesiated nitriles. We developed a new series of lithio-cyclopropylnitriles bearing chelating groups for intramolecular coordination, as a possible strategy to impart configurational stability. Although this strategy has not yet been successful, using density functional theory (DFT) method, we addressed the effect of chelating groups on racemization via the "conducted tour" mechanism. We then explored metal-bromine exchange on enantiopure bromonitrile as alternative route to metalated nitriles. In this way, we demonstrated that magnesiated 2,2-diphenyl cyclopropylnitrile is configurationally stable on the macroscopic timescale. No other metallated nitrile has ever demonstrated configurational stability on this timescale. In contrast, bromine-lithium exchange of 1-bromo-2,2-diphenyl-cyclopropylnitrile demonstrated fast racemization under the same conditions.; Another major project focused on conformational control of acyclic molecules. Using X-ray crystallography and NMR spectroscopy, we found that the 2,6-disubstituted aryl group eclipses its geminal hydrogen, and induces an antiperiplanar relationship of the geminal and vicinal hydrogens. Interestingly, anti-nitrile aldols or syn-ketone aldols bearing 2,6-disubstituted aryl groups demonstrate unanticipated remote effects on acyclic conformation: the 2,6-disubstituted aryl group prefers to be in a gauche position to the largest vicinal group. The minimization of allylic 1,3-strain and syn-pentane-like interaction works together in establishing this conformational preference.
机译:立体化学是化学的重要方面,通常包括研究分子内原子的相对空间排列(静态立体化学)以及研究立体化学的要求和化学反应的结果(动态立体化学)。这两个分支在现代立体化学中相互补充。手性有机金属化合物作为反应中间体在有机合成中具有显着特征。在合成中探索其立体化学的可能性与含金属的立体中心的构型稳定性有关。我们对锂化和镁化的腈的构型稳定性感兴趣。我们开发了一系列带有螯合基团的硫代-环丙基腈,用于分子内配位,作为赋予构型稳定性的一种可能策略。尽管此策略尚未成功,但使用密度泛函理论(DFT)方法,我们通过“传导游”机制解决了螯合基团对消旋作用的影响。然后,我们探索了对映纯溴腈上的金属-溴交换,作为金属化腈的替代途径。通过这种方式,我们证明了在宏观时间尺度上,甲基化的2,2-二苯基环丙基腈是构型稳定的。在这一时间范围内,没有其他金属化的腈显示出构型稳定性。相反,在相同条件下1-溴-2,2-二苯基-环丙基腈的溴-锂交换显示出快速消旋。另一个主要项目集中在无环分子的构象控制上。使用X射线晶体学和NMR光谱,我们发现2,6-二取代的芳基会遮盖其双晶氢,并诱导双晶氢和邻氢的反平面关系。有趣的是,带有2,6-二取代的芳基的抗腈醇或同酮醇的醇对无环构象显示出意想不到的远程影响:2,6-二取代的芳基相对于最大的邻位基团更倾向于在薄纱的位置上。最小化烯丙基1,3-菌株和类似正戊烷的相互作用共同建立了这种构象偏好。

著录项

  • 作者

    Zhang, Yiqun.;

  • 作者单位

    Virginia Polytechnic Institute and State University.;

  • 授予单位 Virginia Polytechnic Institute and State University.;
  • 学科 Chemistry Organic.
  • 学位 Ph.D.
  • 年度 2007
  • 页码 254 p.
  • 总页数 254
  • 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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