Davies Julia A, Besley Nicholas A, Yang Shengfu, Ellis Andrew M
Department of Chemistry , University of Leicester , University Road , Leicester LE1 7RH , U.K.
School of Chemistry , University of Nottingham , University Park , Nottingham NG7 2RD , U.K.
J Phys Chem Lett. 2019 May 2;10(9):2108-2112. doi: 10.1021/acs.jpclett.9b00767. Epub 2019 Apr 16.
Protonated carboxylic acids, (RCOOH)H, are the initial intermediates in acid-catalyzed (Fischer) esterification reactions. However, the identity of the isomeric form has been debated. Surprisingly, no optical spectra have been reported for any isomer of the protonated carboxylic acid monomer, despite it being a fundamental organic cation. Here, we address these issues by using a new approach to prepare cold He-tagged cations of protonated acetic acid (AA), which entails electron ionization of helium nanodroplets containing metastable dimers of AA. The protonated species is subsequently probed using infrared photodissociation spectroscopy, and following a comparison with calculations, we identify the two isomers whose roles in Fischer esterification are debated. These are the carbonyl-protonated E, Z isomer and the metastable hydroxyl-protonated isomer. Our technique provides a novel approach that can be applied to other elusive ionic species.
质子化羧酸(RCOOH)H是酸催化(费歇尔)酯化反应的初始中间体。然而,异构体形式的身份一直存在争议。令人惊讶的是,尽管质子化羧酸单体是一种基本的有机阳离子,但尚未有任何异构体的光谱报道。在这里,我们通过一种新方法来制备质子化乙酸(AA)的冷氦标记阳离子,该方法涉及对含有AA亚稳二聚体的氦纳米滴进行电子电离。随后使用红外光解离光谱对质子化物种进行探测,并与计算结果进行比较,我们确定了在费歇尔酯化反应中作用存在争议的两种异构体。它们是羰基质子化的E、Z异构体和亚稳的羟基质子化异构体。我们的技术提供了一种可应用于其他难以捉摸的离子物种的新方法。