Ion Pairing and Adsorption of Azo Dye/C16TAB Surfactants at the Air-Water Interface

被引:27
作者
Streubel, Saskia [1 ]
Schulze-Zachau, Felix [1 ]
Weissenborn, Eric [1 ]
Braunschweig, Bjoern [1 ]
机构
[1] Westfal Wilhelms Univ Munster, Inst Phys Chem, Corrensstr 28-30, D-48149 Munster, Germany
基金
欧洲研究理事会;
关键词
SUM-FREQUENCY GENERATION; SODIUM DODECYL-SULFATE; VIBRATIONAL SPECTROSCOPY; METHYL-ORANGE; AIR/WATER INTERFACE; AQUEOUS-SOLUTION; CATIONIC SURFACTANTS; MOLECULAR-STRUCTURE; SUNSET YELLOW; CHAIN-LENGTH;
D O I
10.1021/acs.jpcc.7b08924
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
Mixed layers of 6-hydroxy-5-[(4-sulfophenyl)azo]-2-naphthalenesulfonate (Sunset Yellow, SSY) and cetyltrimethylammonium bromide (C(16)TAB) at the air-water interface were studied using vibrational sum-frequency generation (SFG) and dynamic surface tension measurements. In the bulk, addition of C(16)TAB to SSY aqueous solution causes substantial changes in UV/vis absorption spectra, which originate from strong electrostatic interactions between the anionic SSY azo dye with the cationic C(16)TAB surfactant. These interactions are a driving force for the formation of SSY/C(16)TAB ion pairs. The latter are found to be highly surface active while free SSY molecules show no surface activity. Dynamic SFG as well as surface tension measurements at low SSY concentrations reveal that free C(16)TAB surfactants adsorb at the air-water interface on time scales <1 s where they initially form the dominating surface species, but on longer time scales free C(16)TAB is exchanged by SSY/C(16)TAB ion pairs. This causes a dramatic reduction of the surface tension to 35 mN/m but also in foam stability. These changes are accompanied by a substantial loss in SFG intensity from O-H stretching bands around 3200 and 3450 cm(-1), which we relate to a decrease in surface charging due to adsorption of ion pairs with no or negligible net charges. For SSY/C(16)TAB molar ratios >0.5, the O-H bands in SFG spectra are reduced to very low intensities and are indicative to electrically neutral SSY/C(16)TAB ion pairs. This conclusion is corroborated by an analysis of macroscopic foams, which become highly instable in the presence of neutral SSY/C(16)TAB ion pairs. From an analysis of SFG spectra of air-water interfaces, we show that the electrostatic repulsion forces inside the ubiquitous foam films are reduced and thus remove the major stabilization mechanism within macroscopic foam.
引用
收藏
页码:27992 / 28000
页数:9
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