Department of Chemistry, Universitat de les Illes Balears , Palma 07122, Spain.
Department of Materials Scientist, Metallurgic Engineering and Inorganic Chemistry, Universidad de Cádiz , Puerto Real, 11510 Cádiz, Spain.
J Org Chem. 2017 Feb 17;82(4):2160-2170. doi: 10.1021/acs.joc.6b02963. Epub 2017 Feb 3.
The hydrolytic degradation of squaramides and squaramic acids, the product of partial hydrolysis of squaramides, has been evaluated by UV spectroscopy at 37 °C in the pH range 3-10. Under these conditions, the compounds are kinetically stable over long time periods (>100 days). At pH >10, the hydrolysis of the squaramate anions shows first-order dependence on both squaramate and OH. At the same temperature and [OH], the hydrolysis of squaramides usually displays biphasic spectral changes (A → B → C kinetic model) with formation of squaramates as detectable reaction intermediates. The measured rates for the first step (k ≈ 10 M s) are 2-3 orders of magnitude faster than those for the second step (k ≈ 10 M s). Experiments at different temperatures provide activation parameters with values of ΔH ≈ 9-18 kcal mol and ΔS ≈ -5 to -30 cal K mol. DFT calculations show that the mechanism for the alkaline hydrolysis of squaramic acids is quite similar to that of amides.
在 37°C 下,通过 UV 光谱法在 pH 值为 3-10 的范围内评估了酰亚胺和酰亚胺酸(酰亚胺部分水解的产物)的水解降解。在这些条件下,化合物在长时间内(>100 天)表现出动力学稳定性。在 pH>10 时,酰亚胺阴离子的水解显示出对酰亚胺和 OH 的一级依赖性。在相同的温度和 [OH]下,酰亚胺的水解通常显示出两相光谱变化(A→B→C 动力学模型),并形成可检测的反应中间体酰亚胺。第一步的测量速率(k≈10 M s)比第二步(k≈10 M s)快 2-3 个数量级。在不同温度下的实验提供了活化参数,其值为ΔH≈9-18 kcal mol 和 ΔS≈-5 至-30 cal K mol。DFT 计算表明,酰亚胺酸的碱性水解机制与酰胺的机制非常相似。