Key Laboratory of Colloid and Interface Chemistry, Shandong University, Ministry of Education, Jinan 250100, People's Republic of China.
J Phys Chem B. 2010 Apr 22;114(15):5025-33. doi: 10.1021/jp907438x.
Molecular dynamics simulations have been performed to investigate the effect of inorganic salts on the structural and dynamic properties of alkyl benzene sulfonate monolayer formed at the air/water interface. The alkyl benzene sulfonates are two surfactant isomers in the family of sodium hexadecane benzene sulfonates defined by 1C16 and 5C16, indicating a benzene sulfonate group attached to the first and fifth carbon atom in hexadecane backbone. It has been observed that both benzene ring groups and headgroups (-SO(3)(-)) are hydrated due to their polar nature. Water molecules can form stable hydrogen bonds with headgroups of surfactants, and the counterions (Na(+), Mg(2+), or Ca(2+)) are distributed close to the air/water interface. The stronger electrostatic repulsion drives the 1C16 monolayer arranged in disorder in comparison with 5C16, and the presence of inorganic salts may screen electrostatic repulsions between headgroups and decrease the thickness of the interfacial water layer, which follows the series Ca(2+) > Mg(2+) > Na(+). The order of inorganic salt tolerance of two surfactants is 5C16 > 1C16. The counterions may penetrate into the hydration shell of the surfactant headgroups and restrict the mobility of the water molecules situated in this area.
已进行分子动力学模拟,以研究无机盐对空气/水界面形成的烷基苯磺酸盐单层结构和动态特性的影响。烷基苯磺酸盐是由 1C16 和 5C16 定义的十六烷苯磺酸钠系列中的两种表面活性剂异构体,表明苯磺酸盐基团连接在十六烷主链的第一个和第五个碳原子上。已经观察到,由于其极性,两个苯环基团和头基(-SO(3)(-))都被水合。水分子可以与表面活性剂的头基形成稳定的氢键,而抗衡离子(Na(+)、Mg(2+)或 Ca(2+))则分布在靠近空气/水界面处。与 5C16 相比,更强的静电排斥作用导致 1C16 单层无序排列,无机盐的存在可能会屏蔽头基之间的静电排斥作用,并减少界面水层的厚度,其顺序为 Ca(2+) > Mg(2+) > Na(+)。两种表面活性剂对无机盐的耐受性顺序为 5C16 > 1C16。抗衡离子可能会渗透到表面活性剂头基的水合壳中,并限制位于该区域的水分子的流动性。