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首页> 外文期刊>Journal of Molecular Structure >Synthesis and characterization of 1,3,5-triarylpyrazol-4-ols and 3,5-diarylisoxazol-4-ols from chalcones and theoretical studies of the stability of pyrazol-4-ol toward acid dehydration
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Synthesis and characterization of 1,3,5-triarylpyrazol-4-ols and 3,5-diarylisoxazol-4-ols from chalcones and theoretical studies of the stability of pyrazol-4-ol toward acid dehydration

机译:1,3,5-三芳基唑-4-醇和3,5-二芳基辛唑-4-醇的合成与表征来自Chalco.cn的理论研究与吡唑-4-醇掺入酸脱水的稳定性

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摘要

The synthesis of diverse pyrazol-4-ol and isoxazole-4-ol heterocycles involving only 3 reaction steps is reported in this study. However, the synthesis of carboxamide pyrazol-4-ol has failed in the conditions used in the synthesis, acid methanol solution. The carboxamide pyrazol-4-ol decomposes via dehydration, forming the respective pyrazol. Theoretical calculations were used to elucidate the dehydration reaction. We have found a mechanism for acid-catalyzed dehydration that can explain the experimental observations. The calculated free energy profile for acid-catalyzed dehydration of the carboxamide pyrazol-4-ol and phenylpyrazole-4-ol point out that the latter is more stable in relation dehydration, with a dehydration rate 100 times smaller in acid methanol solution. (C) 2019 Elsevier B.V. All rights reserved.
机译:在本研究中报道了不同吡唑-4-醇的合成仅涉及3个反应步骤的杂唑-4-醇杂环。 然而,在合成中使用的条件下,羧酰胺吡唑-4-醇的合成失效,酸性甲醇溶液。 甲酰胺吡唑-4-醇通过脱水分解,形成相应的吡唑。 理论计算用于阐明脱水反应。 我们已经发现了一种可以解释实验观察的酸催化脱水机制。 甲酰胺吡唑-4-醇的酸催化脱水的计算的自由能曲线和苯吡唑-4-醇指出,后者在关系脱水中更稳定,酸性甲醇溶液中较小的脱水速率100倍。 (c)2019 Elsevier B.v.保留所有权利。

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