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苯酚在液-气界面的表面聚集与酸碱平衡。

Surface accumulation and acid-base equilibrium of phenol at the liquid-vapor interface.

作者信息

Richter Clemens, Dupuy Rémi, Trinter Florian, Buttersack Tillmann, Cablitz Louisa, Gholami Shirin, Stemer Dominik, Nicolas Christophe, Seidel Robert, Winter Bernd, Bluhm Hendrik

机构信息

Fritz Haber Institute of the Max Planck Society, Faradayweg 4-6, 14195 Berlin, Germany.

CNRS, Laboratoire de Chimie Physique - Matière et Rayonnement, Sorbonne Université, F-75005 Paris Cedex 05, France.

出版信息

Phys Chem Chem Phys. 2024 Nov 7;26(43):27292-27300. doi: 10.1039/d4cp02212b.

Abstract

We have investigated the surfactant properties of phenol in aqueous solution as a function of pH and bulk concentration using liquid-jet photoelectron spectroscopy (LJ-PES) and surface tension measurements. The emphasis of this work is on the determination of the Gibbs free energy of adsorption and surface excess of phenol and its conjugate base phenolate at the bulk p (9.99), which can be determined for each species using photoelectron spectroscopy. These values are compared to those obtained in measurements well below and well above the p, where pure phenol or phenolate, respectively, are the dominant species, and where the Gibbs free energy of adsorption determined from surface tension and LJ-PES data are in excellent agreement. At the bulk p the surface-sensitive LJ-PES measurements show a deviation of the expected phenol/phenolate ratio in favor of phenol, , an apparent upward shift of the at the surface. In addition, the Gibbs free energies of adsorption determined by LJ-PES at the bulk p for phenol and phenolate deviate from those observed for the pure solutions. We discuss these observations in view of the different surface propensity of phenol and phenolate as well as potential cooperative interactions between them in the near-surface region.

摘要

我们使用液体喷射光电子能谱(LJ-PES)和表面张力测量方法,研究了苯酚在水溶液中的表面活性剂性质与pH值和本体浓度的关系。这项工作的重点是测定在本体pH(9.99)下苯酚及其共轭碱酚盐的吸附吉布斯自由能和表面过剩量,每种物质的这些值都可以使用光电子能谱来确定。将这些值与在远低于和远高于该pH值时测量得到的值进行比较,在远低于该pH值时纯苯酚是主要物种,在远高于该pH值时纯酚盐是主要物种,并且由表面张力和LJ-PES数据确定的吸附吉布斯自由能非常吻合。在本体pH值下,对表面敏感的LJ-PES测量显示,预期的苯酚/酚盐比例出现偏差,有利于苯酚,表面的明显向上移动。此外,LJ-PES在本体pH值下测定的苯酚和酚盐的吸附吉布斯自由能与纯溶液中观察到的不同。我们根据苯酚和酚盐不同的表面倾向以及它们在近表面区域潜在的协同相互作用来讨论这些观察结果。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/76a2/11348876/7046880661f3/d4cp02212b-f1.jpg

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