首页> 外文期刊>Physical chemistry chemical physics: PCCP >Formation mechanisms and yields of small imidazoles from reactions of glyoxal with NH4+ in water at neutral pH
【24h】

Formation mechanisms and yields of small imidazoles from reactions of glyoxal with NH4+ in water at neutral pH

机译:乙二醛与NH4 +在中性pH值下的水中反应生成小咪唑的机理

获取原文
获取原文并翻译 | 示例
           

摘要

Imidazoles have numerous applications in pharmacology, chemistry, optics and electronics, making the development of their environmentally-friendly synthetic procedures worthwhile. In this work, the formation of imidazole, imidazole-2-carboxaldehyde, and 2,2-bis-1H-imidazole was investigated in the self-reaction of glyoxal and its cross-reactions with each of these compounds in aqueous solutions of inorganic ammonium salts at pH = 7. Such conditions are relevant both as cheap and environmentally-friendly synthetic procedures and for the chemistry of natural environments where NH4+ is abundant, such as in atmospheric aerosols. These reactions were investigated both by H-1-NMR and UV-Vis absorption spectroscopy at room temperature with the objective to determine the formation pathways of the three imidazoles and the parameters affecting their yields, to identify the optimal conditions for their synthesis. The results show that only the simplest imidazole is produced by the self-reaction of glyoxal and that imidazole-2-carboxaldehyde and 2,2-bis-1H-imidazole are produced by cross-reactions of glyoxal with imidazole and imidazole-2-carboxaldehyde, respectively. The yields of imidazole-2-carboxaldehyde and 2,2-bis-1H-imidazole formed by the cross-reactions were close to unity, but the yield of imidazole formed by the self-reaction of glyoxal, Y-Im, was small and varied inversely with the initial glyoxal concentration, [G](0): Y-Im > 10% only for [G](0) < 0.1 M. The latter result was attributed to the kinetic competition between the imidazole-forming condensation pathway and the acetal/oligomer formation pathway of the glyoxal self-reaction and constitutes a bottleneck for the formation of higher imidazoles. Other parameters such as pH and the NH4+ concentration did not affect the yields. Thus, by maintaining small glyoxal concentrations, high imidazole yields can be achieved in environmentally-friendly aqueous ammonium solutions at neutral pH. Under the same conditions, higher yields are expected expected from substituted carbonyl compounds, regardless of their concentration, as they produce less acetals.
机译:咪唑在药理学,化学,光学和电子学中有许多应用,因此值得开发环保的合成方法。在这项工作中,研究了在无机铵水溶液中乙二醛的自反应及其与每种化合物的交叉反应中咪唑,咪唑-2-甲醛和2,2-双-1H-咪唑的形成。 pH = 7时,这些盐与廉价和环保的合成程序以及NH4 +含量丰富的自然环境(如大气气溶胶)的化学反应有关。在室温下通过H-1-NMR和UV-Vis吸收光谱对这些反应进行了研究,目的是确定三种咪唑的形成途径以及影响其收率的参数,从而确定合成它们的最佳条件。结果表明,仅最简单的咪唑是由乙二醛的自反应产生的,而咪唑-2-甲醛和2,2-双-1H-咪唑是由乙二醛与咪唑和咪唑-2-甲醛的交叉反应产生的, 分别。交叉反应形成的咪唑-2-甲醛和2,2-双-1H-咪唑的收率接近1,但乙二醛Y-Im的自反应形成的咪唑的收率小且与初始乙二醛浓度成反比,[G](0):Y-Im> 10%仅对[G](0)<0.1 M起作用。后者的结果归因于形成咪唑的缩合途径与乙二醛自反应的乙缩醛/低聚物形成途径,并构成高级咪唑形成的瓶颈。其他参数(例如pH和NH4 +浓度)不影响产量。因此,通过保持较小的乙二醛浓度,可以在中性pH值的环境友好的铵水溶液中获得高的咪唑收率。在相同条件下,预期取代羰基化合物的收率高,无论其浓度如何,因为它们产生的缩醛较少。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号