Valentini Francesca, Galloni Pierluca, Brancadoro Diana, Conte Valeria, Sabuzi Federica
Department of Chemical Science and Technologies, University of Rome Tor Vergata, Rome, Italy.
BT-InnoVaChem Srl, Rome, Italy.
Front Chem. 2022 Mar 9;10:842190. doi: 10.3389/fchem.2022.842190. eCollection 2022.
Considering the remarkable relevance of acetylated derivatives of phenols, alcohols, and aryl and alkyl thiols in different areas of biology, as well as in synthetic organic chemistry, a sustainable solvent-free approach to perform acetylation reactions is proposed here. Acetylation reactions are classically performed using excess of acetic anhydride (AcO) in solvent-free conditions or by eventually working with stoichiometric amounts of AcO in organic solvents; both methods require the addition of basic or acid catalysts to promote the esterification. Therefore, they usually lead to the generation of high amounts of wastes, which sensibly raise the E-factor of the process. With the aim to develop a more sustainable system, a solvent-free, stoichiometric acetylation protocol is, thus, proposed. The naturally occurring phenol, thymol, can be converted to the corresponding-biologically active-ester with good yields, in the presence of 1% of VOSO. Interestingly, the process can be efficiently adopted to synthesize other thymyl esters, as well as to perform acetylation of alcohols and aryl and alkyl thiols. Remarkably, a further improvement has been achieved replacing AcO with its greener alternative, isopropenyl acetate (IPA).
考虑到酚类、醇类以及芳基和烷基硫醇的乙酰化衍生物在生物学不同领域以及合成有机化学中的显著相关性,本文提出一种可持续的无溶剂乙酰化反应方法。传统的乙酰化反应是在无溶剂条件下使用过量的乙酸酐(AcO)进行,或者最终在有机溶剂中使用化学计量的AcO;这两种方法都需要添加碱性或酸性催化剂来促进酯化反应。因此,它们通常会产生大量废物,显著提高了该过程的E因子。为了开发更可持续的体系,本文提出了一种无溶剂、化学计量的乙酰化方案。在1%的VOSO存在下,天然存在的酚类物质百里酚可以高产率地转化为相应的具有生物活性的酯。有趣的是,该方法可以有效地用于合成其他百里酚酯,以及对醇类、芳基和烷基硫醇进行乙酰化反应。值得注意的是,用更绿色的替代品乙酸异丙烯酯(IPA)代替AcO后,取得了进一步的改进。