Department of Chemistry , University of Kentucky , Lexington , Kentucky 40506 , United States.
Department of Environmental Science & Engineering , California Institute of Technology , Pasadena , California 91125 , United States.
Langmuir. 2018 Aug 7;34(31):9307-9313. doi: 10.1021/acs.langmuir.8b01606. Epub 2018 Jul 23.
Understanding the acid-base behavior of carboxylic acids on aqueous interfaces is a fundamental issue in nature. Surface processes involving carboxylic acids such as acetic and pyruvic acids play roles in (1) the transport of nutrients through cell membranes, (2) the cycling of metabolites relevant to the origin of life, and (3) the photooxidative processing of biogenic and anthropogenic emissions in aerosols and atmospheric waters. Here, we report that 50% of gaseous acetic acid and pyruvic acid molecules transfer a proton to the surface of water at pH 2.8 and 1.8 units lower than their respective acidity constants p K = 4.6 and 2.4 in bulk water. These findings provide key insights into the relative Bronsted acidities of common carboxylic acids versus interfacial water. In addition, the work estimates the reactive uptake coefficient of gaseous pyruvic acid by water to be γ = 0.06. This work is useful to interpret the interfacial behavior of pyruvic acid under low water activity conditions, typically found in haze aerosols, clouds, and fog waters.
理解羧酸在水界面上的酸碱行为是自然界中的一个基本问题。涉及羧酸(如乙酸和丙酮酸)的表面过程在以下三个方面发挥着作用:(1)营养物质通过细胞膜的运输,(2)与生命起源有关的代谢物的循环,以及(3)气溶胶和大气水中生物源和人为排放物的光氧化处理。在这里,我们报告说,在 pH 值为 2.8 时,50%的气态乙酸和丙酮酸分子将质子转移到水表面,这比它们在本体水中各自的酸度常数 pK = 4.6 和 2.4 低 1.8 个单位。这些发现为常见羧酸与界面水的相对布朗斯特酸度提供了关键的见解。此外,这项工作估计了气态丙酮酸在水中的反应性吸收系数γ=0.06。这项工作对于解释低水活度条件下丙酮酸的界面行为很有用,这种条件通常存在于霾气溶胶、云和雾水中。