Kjellin U R Mikael, Reimer Johan, Hansson Per
Department of Chemistry, Surface Chemistry, Royal Institute of Technology, Drottning Kristinas väg 51, SE-100 44 Stockholm, Sweden.
J Colloid Interface Sci. 2003 Jun 15;262(2):506-15. doi: 10.1016/S0021-9797(03)00168-1.
Several physicochemical properties have been determined for N-dodecyllactobionamide (LABA), maltose 6'-O-dodecanoate (C12-maltose ester), and tetra(ethylene oxide) dodecyl amide (TEDAd). The increase in the flexibility of the sugar headgroup, enabling more possible molecular conformations, reduces the minimum area/molecule at the liquid-vapor interface obtained at the critical micelle concentration (cmc). The obtained cmc's were 0.35 mM (LABA), 0.3 mM (C12-maltose ester), and 0.5 mM (TEDAd). The monomer diffusion coefficient decreased with the molecular weight and increasing headgroup flexibility of the sugar headgroup, and values were in the range from 3.1 x 10(-10) to 3.6 x 10(-10) m2/s. The micelle diffusion coefficients (0.46 x 10(-10) to 0.68 x 10(-10) m2/s) indicated that the TEDAd micelles deviated most from spherical shape. The micelle aggregation numbers determined by time-resolved fluorescence quenching (TRFQ) were estimated to be 120+/-10 (LABA), 90+/-10 (C12-maltose ester), and 130+/-10 (TEDAd). The dynamic surface tension measurements show that the adsorption of TEDAd onto the liquid-vapor interface at short surface lifetimes is diffusion-limited, whereas an adsorption barrier is present for the sugar surfactants. The analysis of the dynamic surface tension data above the cmc shows that the rate of demicellization is faster for TEDAd than for the two sugar-based surfactants.
已测定了N-十二烷基乳糖酰胺(LABA)、麦芽糖6'-O-十二烷酸酯(C12-麦芽糖酯)和四(环氧乙烷)十二烷基酰胺(TEDAd)的几种物理化学性质。糖头基柔韧性的增加,使得分子构象更多,降低了在临界胶束浓度(cmc)下在液-气界面处获得的每个分子的最小面积。所获得的cmc分别为0.35 mM(LABA)、0.3 mM(C12-麦芽糖酯)和0.5 mM(TEDAd)。单体扩散系数随分子量以及糖头基头基柔韧性的增加而降低,其值在3.1×10⁻¹⁰至3.6×10⁻¹⁰ m²/s范围内。胶束扩散系数(0.46×10⁻¹⁰至0.68×10⁻¹⁰ m²/s)表明TEDAd胶束与球形的偏差最大。通过时间分辨荧光猝灭(TRFQ)测定的胶束聚集数估计为120±10(LABA)、90±10(C12-麦芽糖酯)和130±10(TEDAd)。动态表面张力测量表明,在短表面寿命下,TEDAd在液-气界面上的吸附受扩散限制,而糖基表面活性剂存在吸附屏障。对cmc以上动态表面张力数据的分析表明,TEDAd的脱胶束速率比两种糖基表面活性剂更快。