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Carbonic acid monoethyl ester as a pure solid and its conformational isomerism in the gas-phase

机译:纯净的碳酸单乙酯及其在气相中的构象异构

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The monoesters of carbonic acid are deemed to be unstable and decompose to alcohol and carbon dioxide. In spite of this, we here report the isolation of the elusive carbonic acid monoethyl ester (CAEE) as a pure solid from ethanolic solutions of potassium bicarbonate. The hemiester is surprisingly stable in acidic solution and does not experience hydrolysis to carbonic acid. Furthermore, it is also stable in the gas phase, which we demonstrate by subliming the hemiester without decomposition. This could not be achieved in the past for any hemiester of carbonic acid. In the gas phase the hemiester experiences conformational isomerism at 210 K. Interestingly, the thermodynamically favored conformation is only reached for the torsional movement of the terminal ethyl group, but not the terminal hydrogen atom on the millisecond time scale. Accordingly, IR spectra of the gas phase trapped in an argon matrix are best explained on the basis of a 5?:?1 mixture of monomeric conformers. Our findings necessitate reevaluation of claims of the formation of a carbonic acid polymorph in methanolic solution, which is the subject of a forthcoming publication.
机译:碳酸的单酯被认为是不稳定的并且分解为醇和二氧化碳。尽管如此,我们在此报告了从碳酸氢钾的乙醇溶液中分离出的纯净固体难以捉摸的碳酸单乙酯(CAEE)。半酯在酸性溶液中出奇地稳定,并且不经历水解成碳酸。此外,它在气相中也是稳定的,我们通过升华半酯而不分解来证明这一点。过去,对于碳酸半酯来说,这是无法实现的。在气相中,半酯在210 K处经历构象异构。有趣的是,仅在末端乙基的扭转运动中达到热力学上有利的构象,而在毫秒时间尺度上未达到末端氢原子。因此,基于单体构象异构体的5∶1∶1的混合物,可以最好地解释捕获在氩气基质中的气相的IR光谱。我们的发现需要重新评估在甲醇溶液中形成碳酸多晶型物的要求,这是即将出版的出版物的主题。

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