首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Effect of Divalent Cationic Ions on the Adsorption Behavior of Zwitterionic Surfactant at Silica/Solution Interface
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Effect of Divalent Cationic Ions on the Adsorption Behavior of Zwitterionic Surfactant at Silica/Solution Interface

机译:二价阳离子对两性离子表面活性剂在二氧化硅/溶液界面的吸附行为的影响

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The adsorption behavior of zwitterionic surfactant dodecyl sulfobetaine (DBS) on a silica/solution interface with Ca~(2+), Mg~(2+) existing in aqueous solution is explored by atomistic molecular simulations. The interaction energy contribution of van der Waals and electrostatic potentials in the surfactants/water/silica system are respectively calculated, from which the electrical interaction can be found to play a decisive role in the adsorption tendency of DBS on the silica surface with or without inorganic ions, despite different mechanisms. The distinct decrease of energy has been found to be derived from electrical interaction when DBS adsorb on the silica surface covered by Ca~(2+) or Mg~(2+). Therefore, it can be predicted that the cationic ions combined on the negatively charged silica surface in a mineral water medium might decrease the adsorption trend of DBS on the silica surface, which has been experimentally proven by TOC measurement. Structural information of the close interface layer and the distribution of water molecules are analyzed after the complete molecular dynamics simulation using a ternary model. Ca~(2+) and Mg~(2+) combined on the silica surface can reduce the adsorption amount of DBS by preventing the direct interaction between DBS and surface, and bringing about the orientation reversal of DBS molecules to break the order of adsorption interface layer. Furthermore, changes in the status of the water spreading on the silica surface caused by the complexation of cations are also an important reason in the adsorption reduction.
机译:通过原子分子模拟研究了两性离子表面活性剂十二烷基磺基甜菜碱(DBS)在二氧化硅/溶液界面上对Ca〜(2 +),Mg〜(2+)的吸附行为。分别计算了范德华力和表面活性剂/水/二氧化硅体系中静电势的相互作用能,从中可以发现,无论有无无机物,电相互作用对DBS在二氧化硅表面的吸附趋势起着决定性的作用。离子,尽管机制不同。发现当DBS吸附在被Ca〜(2+)或Mg〜(2+)覆盖的二氧化硅表面上时,电相互作用会明显降低能量。因此,可以预见,在矿泉水介质中结合在带负电荷的二氧化硅表面上的阳离子可能会降低DBS在二氧化硅表面上的吸附趋势,这已通过TOC测量得到了实验证明。在使用三元模型进行完整的分子动力学模拟之后,分析紧密界面层的结构信息和水分子的分布。结合在二氧化硅表面的Ca〜(2+)和Mg〜(2+)可通过阻止DBS与表面之间的直接相互作用并引起DBS分子的方向反转以破坏吸附顺序来减少DBS的吸附量。接口层。此外,由阳离子的络合引起的在二氧化硅表面上散布的水的状态的变化也是吸附减少的重要原因。

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