AMOLF, Ultrafast Spectroscopy, Science Park 104, 1098 XG Amsterdam, The Netherlands.
J Am Chem Soc. 2023 Mar 29;145(12):6682-6690. doi: 10.1021/jacs.2c11441. Epub 2023 Mar 20.
Proton-transfer reactions in water are essential to chemistry and biology. Earlier studies reported on aqueous proton-transfer mechanisms by observing light-triggered reactions of strong (photo)acids and weak bases. Similar studies on strong (photo)base-weak acid reactions would also be of interest because earlier theoretical works found evidence for mechanistic differences between aqueous H and OH transfer. In this work, we study the reaction of actinoquinol, a water-soluble strong photobase, with the water solvent and the weak acid succinimide. We find that in aqueous solutions containing succinimide, the proton-transfer reaction proceeds via two parallel and competing reaction channels. In the first channel, actinoquinol extracts a proton from water, after which the newly generated hydroxide ion is scavenged by succinimide. In the second channel, succinimide forms a hydrogen-bonded complex with actinoquinol and the proton is transferred directly. Interestingly, we do not observe proton conduction in water-separated actinoquinol-succinimide complexes, which makes the newly studied strong base-weak acid reaction essentially different from previously studied strong acid-weak base reactions.
质子转移反应在化学和生物学中至关重要。早期的研究通过观察强(光)酸和弱碱的光触发反应,报道了水相质子转移机制。强(光)碱-弱酸反应的类似研究也将是有趣的,因为早期的理论工作发现水相中 H 和 OH 转移的机制差异的证据。在这项工作中,我们研究了水溶性强光碱 actinquinol 与水溶剂和弱酸琥珀酰亚胺的反应。我们发现,在含有琥珀酰亚胺的水溶液中,质子转移反应通过两个平行且竞争的反应通道进行。在第一个通道中,actinquinol 从水中提取质子,之后新生成的氢氧根离子被琥珀酰亚胺捕获。在第二个通道中,琥珀酰亚胺与 actinquinol 形成氢键复合物,质子直接转移。有趣的是,我们在水分离的 actinquinol-琥珀酰亚胺复合物中没有观察到质子传导,这使得新研究的强碱-弱酸反应与以前研究的强酸-弱酸反应本质上不同。