Department of Chemistry, Queen's University, Kingston, Ontario, Canada K7L 3N6.
J Colloid Interface Sci. 2013 Mar 1;393:352-60. doi: 10.1016/j.jcis.2012.10.026. Epub 2012 Oct 22.
Tannins and humic substances, commonly referred to as natural organic matter (NOM), constitute an important component of natural water and soil systems. These species contain numerous hydroxyl and carboxyl functional groups whose reactivity is strongly dependent on both the quantity and location of these moieties on the aromatic ring. In the present study, self-assembled monolayers (SAMs) of 4-(12-mercaptododecyl)benzene-1,2-diol (o-hydroxyphenol-terminated); 5-(12-mercaptododecyl)benzene-1,3-diol (m-hydroxyphenol-terminated); bis(11-thioundecyl) hydrogen phosphate (monoprotic phosphate); and 11-thioundecyl dihydrogen phosphate (diprotic phosphate) were prepared and characterized using X-ray photoelectron spectroscopy (XPS), attenuated total reflectance infrared spectroscopy (ATR-IR), and water contact angle measurements. The interactions between phenolic groups with phosphates were examined as a function of pH using the chemical force spectrometry (CFS) technique. The observations are discussed in the context of hydrogen bonding and electrostatic repulsion interaction between corresponding species. Adhesion force profiles of hydroxyphenol isomers interacting with monoprotic phosphate are dominated by ionic H-bonding; however the strength of o-hydroxyphenol interactions is significantly higher. The difference in location of hydroxyl groups on the interface also results in significantly different force-distance profiles for the isomeric hydroxyphenols when interacting with diprotic phosphate.
单宁和腐殖质,通常称为天然有机物(NOM),是天然水和土壤系统的重要组成部分。这些物质含有许多羟基和羧基官能团,其反应性强烈依赖于这些部分在芳环上的数量和位置。在本研究中,通过自组装技术制备了 4-(12-巯基十二烷基)苯-1,2-二醇(邻羟苯基封端);5-(12-巯基十二烷基)苯-1,3-二醇(间羟苯基封端);双(11-硫代十一烷基)磷酸氢盐(单质子磷酸盐);和 11-硫代十一烷基磷酸二氢盐(双质子磷酸盐),并通过 X 射线光电子能谱(XPS)、衰减全反射红外光谱(ATR-IR)和水接触角测量对其进行了表征。使用化学力谱(CFS)技术研究了在 pH 值变化条件下酚类基团与磷酸根之间的相互作用。在讨论中考虑了氢键和相应物种之间的静电排斥相互作用。与单质子磷酸盐相互作用的邻羟苯酚异构体的粘附力曲线主要由离子氢键主导;但是邻羟苯酚相互作用的强度要高得多。羟基在界面上的位置差异也导致了异羟酚与双质子磷酸根相互作用时的力-距离曲线有显著差异。