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首页> 外文期刊>Canadian Journal of Chemistry >Micellar catalysis of organic reactions .37. A comparison of the catalysis of ester and amide hydrolysis by copper containing micelles
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Micellar catalysis of organic reactions .37. A comparison of the catalysis of ester and amide hydrolysis by copper containing micelles

机译:胶束催化有机反应.37。含铜微团催化酯和酰胺水解的比较

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The hydrolysis of a number of nitroactivated esters and amides has been studied in the presence of copper-containing metallomicelles at neutral pH. The relative rates of hydrolysis in the pure metallomicelle and in co-micelles with either cetyltrimethylammonium bromide (ctab) or Triton X-100 depends on the hydrophobicity of the substrate and whether it is completely solubilized by the copper micelle. Thus it depends on the concentration of the copper micelle. At low concentrations of copper micelle (0.2 mM) where the substrate is incompletely solubilized, the reaction is faster when 2 mM ctab is added. At higher concentrations (>0.6 mM) where the substrate may be almost completely solubilized by the copper micelle, the reaction is slower when 2 mM ctab is added. For ester hydrolysis the presence of either a carboxylic acid group or a heterocyclic nitrogen atom close to the reaction centre resulted in much larger catalysis by the metallomicelle than for model compounds without these additional groups. It is postulated that these groups coordinate with the metal ion and thus present the reaction centre close to a metal-bound hydroxyl resulting in a significant increase in the rate of bond formation, which is the rate-determining step for ester hydrolysis. For amide hydrolysis the presence of a carboxyl group ortho to the reaction centre did not lead to larger catalysis by the copper micelle than for the compound without this group. This difference is attributed to the different rate-determining steps for amide and for ester hydrolysis.
机译:在中性pH条件下,在含铜金属硅化物存在下,已经研究了许多硝基活化的酯和酰胺的水解。在纯金属颗粒中以及在十六烷基三甲基溴化铵(ctab)或Triton X-100中的胶束中,水解的相对速率取决于底物的疏水性以及它是否被铜胶束完全溶解。因此,这取决于铜胶束的浓度。在底物未完全溶解的低浓度铜胶束(0.2 mM)下,添加2 mM ctab时反应更快。在较高浓度(> 0.6 mM)下,底物可能几乎被铜胶束完全溶解,当添加2 mM ctab时,反应较慢。对于酯水解而言,靠近反应中心的羧酸基团或杂环氮原子的存在比没有这些额外基团的模型化合物对金属硅化物的催化作用大得多。假定这些基团与金属离子配位,因此反应中心靠近金属结合的羟基,导致键形成速率的显着增加,这是酯水解的速率决定步骤。对于酰胺水解而言,与没有该基团的化合物相比,与反应中心邻位的羧基的存在没有导致铜胶束催化更大的催化作用。该差异归因于酰胺和酯水解的不同速率测定步骤。

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