Kua Jeremy, Peña Maria T, Cotter Samantha N, Leca John
Department of Chemistry & Biochemistry, University of San Diego, San Diego, CA 92110, USA.
Life (Basel). 2024 Dec 24;15(1):1. doi: 10.3390/life15010001.
Using computational methods, we examine if the presence of HS can tame the unruly formose reaction by generating a free energy map of the reaction thermodynamics and kinetics of sulfur analogs within the core cycle. With mercaptoaldehyde as the linchpin C species, and feeding the cycle with CHO, selected aldol additions and enolizations are kinetically more favorable. Thione formation is thermodynamically less favored compared to aldehydes and ketones, but all these species can be connected by enolization reactions. In some sulfur analogs, the retroaldol transformation of a C4 species back into linchpin species is thermodynamically favorable, and we have found one route incorporating where incorporating sulfur selects for a specific pathway over others. However, as CHO diminishes, the aldol addition of larger species is less favorable for the sulfur analogs. Our results also suggest that competing Cannizzaro side reactions are kinetically less favored and thermodynamically disfavored when HS is abundant.
我们运用计算方法,通过生成核心循环中硫类似物反应热力学和动力学的自由能图,来研究HS的存在是否能抑制难以控制的福莫司反应。以巯基乙醛作为关键的C物种,并向循环中输入CHO,选定的羟醛加成和烯醇化反应在动力学上更有利。与醛和酮相比,硫酮的形成在热力学上不太有利,但所有这些物种都可以通过烯醇化反应相互连接。在一些硫类似物中,C4物种逆向羟醛转化回关键物种在热力学上是有利的,并且我们发现了一条引入硫的途径,其中引入硫会选择特定的途径而非其他途径。然而,随着CHO减少,较大物种的羟醛加成对硫类似物来说不太有利。我们的结果还表明,当HS丰富时,竞争性的坎尼扎罗副反应在动力学上不太有利且在热力学上也不利。