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Developpement de nouveaux sels Binol-imidazoliums: De la catalyse asymetrique aux applications biologiques.

机译:新型Binol-咪唑鎓盐的开发:从不对称催化到生物学应用。

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摘要

1,1'-Bi-2-naphthol or Binol, having an axial chirality, is a widely used ligand in asymmetric catalysis. Over the last twenty years, Binol was used as a synthon for the synthesis of numerous ligands for the asymmetric catalysis of various reactions including hydrogenation, alkylation and various pericyclic reactions. The interest in this ligand comes from its versatility and possibilities to modify its electronic character and to introduce steric bulk around the catalytic site.;Paralleling interest in the study of Binol derivatives as ligands for asymmetric catalysis has been a growth in research on ionic liquids. Ionic liquids are salts with melting points below 100°C. They combine many interesting properties, such as low vapor pressure, thermal and chemical stability and high solvation power. Due to these properties, ionic liquids have been investigated to develop a range of recyclable solvents. Recently, the concept of task-specific ionic liquids has emerged in which the properties of the ionic liquids are tuned by selecting different cations and anions, to accomplish specific applications.;Following this approach, several ionic ligands have been made by coupling known ligands to an ionic liquid cation. Rarely, Binol has been used for this purpose. In this thesis, we study a family of Binol-imidazolium type compounds, in which Binol and imidazolium units are linked by a methylene spacer. Several analogs were synthesized by varying the number of imidazolium units and their position on the Binol moiety, the alkyl chain length on the imidazolium units and the counter-anion. After a study of the thermal properties, the use of Binol-imidazoliums as ligands was described in the asymmetric ethylation of aromatic aldehydes. The reaction was conducted in ionic liquid solvent and both Binol-imidazolium ligand and the solvent were recycled at the end of the reaction. This study demonstrates that the selectivity of these ligands greatly depends on their structure. Indeed, only Binol analogs functionalized at the 6 and 6' positions were selectivite.;Although Binol derivatives functionalized at the 3 and 3' positions did not serve as enantioselective catalysts, they were able to complex anions. Furthermore, it has already been reported by our group, that imidazolium compounds can transport anions across lipid bilayers depending on their amphiphilicity. In the second part of this thesis, we cover the ionophoric properties of Binol derivatives functionalized at the 3 and 3' positions by imidazolium moieties. First, a study will be presented of their structure-property relationships in the transport through liposomes. Thereafter, the transport mechanism will be discussed.;Finally, the biological activity of our compounds with ionophore activity was studied, because the anion transport is a key process in cell biology. Their antibacterial activity was tested on four strains of bacteria. Binol-imidazolium compounds exhibited activity on Gram positive bacteria. Their cytotoxicity was also studied on human cells.
机译:具有轴向手性的1,1'-Bi-2-萘酚或联萘酚是不对称催化中广泛使用的配体。在过去的20年中,Binol用作合成子,用于合成许多配体,用于不对称催化各种反应,包括氢化,烷基化和各种周环反应。对这种配体的兴趣来自于其多功能性以及改变其电子特性并在催化位点周围引入空间体积的可能性。对作为非对称催化配体的二酚衍生物的研究的并行兴趣是离子液体研究的增长。离子液体是熔点低于100°C的盐。它们结合了许多有趣的特性,例如低蒸气压,热和化学稳定性以及高溶剂化能力。由于这些特性,已经对离子液体进行了研究,以开发出一系列可回收的溶剂。最近,出现了特定任务的离子液体的概念,其中通过选择不同的阳离子和阴离子来调节离子液体的特性,以实现特定的应用。按照这种方法,通过将已知的配体与离子液体阳离子。很少有人将Binol用于此目的。在本文中,我们研究了一个由二亚甲基间隔基连接的二元醇和咪唑单元的二元醇-咪唑类化合物。通过改变咪唑鎓单元的数目及其在Binol部分上的位置,咪唑鎓单元上的烷基链长和抗衡阴离子,合成了几种类似物。在对热性能进行研究之后,在芳香醛的不对称乙基化中描述了使用二酚-咪唑鎓作为配体。该反应在离子液体溶剂中进行,并且在反应结束时,将二醇-咪唑配体和溶剂都再循环。这项研究表明,这些配体的选择性很大程度上取决于其结构。实际上,只有在6和6'位置官能化的Binol类似物才具有选择性。尽管在3和3'位置官能化的Binol衍生物不能用作对映选择性催化剂,但它们能够络合阴离子。此外,我们的小组已经报告说,咪唑鎓化合物可以根据两亲性将阴离子跨脂质双层传输。在本文的第二部分,我们讨论了由咪唑鎓部分在3和3'位官能化的Binol衍生物的离子载体性质。首先,将研究它们在通过脂质体转运中的结构-性质关系。最后,研究了具有离子载体活性的化合物的生物活性,因为阴离子的运输是细胞生物学中的关键过程。在四种细菌上测试了它们的抗菌活性。苯酚-咪唑鎓化合物对革兰氏阳性细菌具有活性。还对人细胞研究了它们的细胞毒性。

著录项

  • 作者

    Vidal, Marc.;

  • 作者单位

    Universite de Montreal (Canada).;

  • 授予单位 Universite de Montreal (Canada).;
  • 学科 Organic chemistry.
  • 学位 Ph.D.
  • 年度 2014
  • 页码 267 p.
  • 总页数 267
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 肿瘤学;
  • 关键词

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