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Novel low antimicrobial toxicity imidazolium ionic liquids: design, synthesis and their applications in organic synthesis

机译:新型低抗菌毒性咪唑离子液体:设计,合成及其在有机合成中的应用

摘要

This thesis is focused on the synthesis and application of ionic liquids in organic synthesis. A library of novel imidazolium ionic liquids was designed and synthesised in efforts to find molecules which had reduced anti-microbial toxicity and increased aerobic biodegradation. Synthesis of novel ionic liquids has been carried with efficient and easy methods to achieve atom economy, reduced number of steps and high yields. Ionic liquids synthesized in the lab have been tested either as a catalyst in acetalization reactions, or as a solvent in Carbonyl-Ene reactions. These studies have given excellent results and clearly demonstrated the potential and applicability of ionic liquids in organic synthesis. Working with our collaborators, anti-microbial toxicity and biodegradation of these ionic liquids has been studied. Preliminary studies of the toxicity of all ionic liquids were performed against a panel of 12 fungi and 8 bacterial strains. Antifungal and antibacterial toxicity studies demonstrated that most of these ionic liquids did not inhibit the growth of any organism screened at concentrations of 2.0 mM. Biodegradation studies of the novel of novel ionic liquids have also been performed and have given valuable information on the next step in rational design towards novel readily biodegradable ionic liquids.
机译:本文主要研究离子液体的合成及其在有机合成中的应用。设计并合成了新型咪唑鎓离子液体库,以寻找具有降低的抗微生物毒性和增加的好氧生物降解能力的分子。新型离子液体的合成已通过有效且简便的方法进行,以实现原子经济,减少步骤数和提高收率。在实验室合成的离子液体已经过测试,可以作为缩醛反应中的催化剂,也可以作为羰基-乙烯反应中的溶剂。这些研究给出了出色的结果,并清楚地证明了离子液体在有机合成中的潜力和适用性。与我们的合作伙伴合作,已经研究了这些离子液体的抗微生物毒性和生物降解性。对所有离子液体对一组12种真菌和8种细菌菌株的毒性进行了初步研究。抗真菌和抗菌毒性研究表明,这些离子液体大多数都不会抑制任何浓度为2.0 mM的被筛选生物的生长。还已经进行了对新型离子液体的生物降解研究,并在合理设计中朝着易于生物降解的新型离子液体的下一步提供了有价值的信息。

著录项

  • 作者

    Gore Rohitkumar G.;

  • 作者单位
  • 年度 2012
  • 总页数
  • 原文格式 PDF
  • 正文语种 en
  • 中图分类

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