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Specific acid catalysis and Lewis acid catalysis of Diels–Alder reactions in aqueous media

机译:水性介质中Diels–Alder反应的特定酸催化和路易斯酸催化

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摘要

A comparative study of specific acid catalysis and Lewis acid catalysis of Diels–Alder reactions between dienophiles (1, 4 and 6) and cyclopentadiene (2) in water and mixed aqueous media is reported. The reactions were performed in water with copper(II) nitrate as the Lewis acid catalyst whereas hydrochloric acid was employed for specific acid catalysis. At equimolar amounts of copper(II) nitrate and hydrochloric acid (0.01 M, for example) and under the same reaction conditions, the reaction rate for 1a with 2 is about 40 times faster with copper catalysis than with specific acid catalysis. Moreover, at 32 °Cand 0.01 M HCl, the reaction of 1b with 2 is about 21 times faster than the same uncatalyzed reaction in pure water under the same reaction conditions. The inverse solvent kinetic isotope effect shows that these Diels–Alder reactions undergo specific acid catalysis.
机译:在水和混合水介质中,亲双烯体(1、4和6)与环戊二烯(2)之间的Diels-Alder反应的特定酸催化和路易斯酸催化的比较研究已有报道。反应在水中以硝酸铜(II)作为路易斯酸催化剂进行,而盐酸则用于特定的酸催化。在等摩尔量的硝酸铜(II)和盐酸(例如0.01 M)下,在相同的反应条件下,铜催化下1a与2的反应速率比特定酸催化快约40倍。此外,在相同的反应条件下,在32°C和0.01 M HCl下,1b与2的反应比在纯水中的相同未催化反应快约21倍。溶剂动力学同位素的反作用表明这些Diels–Alder反应会经历特定的酸催化。

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