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质子化酮和醛的固态结构。

Solid-State Structure of Protonated Ketones and Aldehydes.

机构信息

Canadian Centre for Research in Advanced Fluorine, Technologies and Department of Chemistry and Biochemistry, University of Lethbridge, 4401 University Drive, Lethbridge, AB, T1K 3M4, Canada.

出版信息

Angew Chem Int Ed Engl. 2017 Dec 18;56(51):16380-16384. doi: 10.1002/anie.201710263. Epub 2017 Nov 29.

Abstract

Protonated carbonyl compounds have been invoked as intermediates in many acid-catalyzed organic reactions. To gain key structural and electronic data about such intermediates, oxonium salts derived from five representative examples of ketones and aldehydes are synthesized in the solid state, and characterized by X-ray crystallography and Raman spectroscopy for the first time. DFT calculations were carried out on the cations in the gas phase. Whereas an equimolar reaction of the carbonyl compounds, acetone, cyclopentanone, adamantanone, and acetaldehyde, with SbF in anhydrous HF yielded mononuclear oxonium cations, the same stoichiometry in a reaction with benzaldehyde resulted in formation of a hemiprotonated, hydrogen-bridged dimeric cation. Hemiprotonated acetaldehyde was obtained when a 2:1 ratio of aldehyde and SbF was used. Experimental and NBO analyses quantify the significant increase in electrophilicity of the oxonium cations compared to that of the parent ketones/aldehydes.

摘要

质子化羰基化合物在许多酸催化的有机反应中被认为是中间体。为了获得这些中间体的关键结构和电子数据,首次在固态下合成了来自五种代表性酮和醛的氧翁盐,并通过 X 射线晶体学和拉曼光谱进行了表征。在气相中对阳离子进行了 DFT 计算。在无水 HF 中,等摩尔的羰基化合物丙酮、环戊酮、金刚烷酮和乙醛与 SbF 反应生成单核氧翁阳离子,而相同化学计量的苯甲醛反应则生成半质子化的氢键桥联二聚阳离子。当使用 2:1 的醛和 SbF 时,得到了半质子化的乙醛。实验和 NBO 分析定量地表明,与母体酮/醛相比,氧翁阳离子的亲电性显著增加。

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