Benmore Chris J, Wang Yuqin, Darling Seth B, Chen Junhong
X-Ray Science Division, Advanced Photon Source, Argonne National Laboratory, Lemont,IL 60439, USA.
Consortium for Advanced Science and Engineering, University of Chicago, Chicago,IL 60637, USA.
Philos Trans A Math Phys Eng Sci. 2023 Oct 30;381(2259):20220333. doi: 10.1098/rsta.2022.0333. Epub 2023 Sep 11.
The presence of short-chain per- and polyfluoroalkyl substances in water poses a major health and environmental challenge. Here, we have performed high-energy small- and wide-angle X-ray scattering measurements on CF[CF]COOH (where = 1, 2, 3 represents the chain length) and their aqueous solutions at 10% mole concentrations to characterize their molecular interactions at the atomic and nanometer length scales. The experimental wide-angle structure factors have been modelled using Empirical Potential Structural Refinement. The oxygen-oxygen partial X-ray pair distribution functions show that the coordination number between the hydroxyl oxygen on the acid and surrounding oxygen water molecules increases significantly with acid chain length, rising from 3.2 for = 1 to 4.1 for = 3. The small-angle scattering is dominated by a sharp, high-intensity peak at ∼ 0.2 Å and a smaller peak at = 1.2 Å for = 3, both of which decrease with decreasing chain length. The peak is attributed to groups of adjacent non-bonded acid molecules, and has contributions from both correlations between acid molecules and water-water interactions. In all cases, the models show nanoscale aggregation occurs in the form of denser channels of winding hydrogen-bonded chains, approximately 20 water molecules in length, surrounding clusters of acid molecules. This article is part of the theme issue 'Exploring the length scales, timescales and chemistry of challenging materials (Part 2)'.
水中短链全氟和多氟烷基物质的存在对健康和环境构成了重大挑战。在此,我们对CF[CF]COOH(其中 = 1、2、3代表链长)及其10%摩尔浓度的水溶液进行了高能小角和广角X射线散射测量,以在原子和纳米长度尺度上表征它们的分子相互作用。实验广角结构因子已使用经验势结构精修进行建模。氧-氧部分X射线对分布函数表明,酸上的羟基氧与周围水分子之间的配位数随酸链长显著增加,从 = 1时的3.2增加到 = 3时的4.1。对于 = 3,小角散射由~0.2 Å处的一个尖锐、高强度峰和 = 1.2 Å处的一个较小峰主导,这两个峰均随链长减小而降低。 峰归因于相邻的非键合酸分子基团, 峰既有酸分子之间的相关性贡献,也有水-水相互作用的贡献。在所有情况下,模型均显示纳米级聚集以缠绕氢键链的较密通道形式出现,长度约为20个水分子,围绕着酸分子簇。本文是主题为“探索具有挑战性材料的长度尺度、时间尺度和化学性质(第2部分)”的一部分。