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Hydrophobic, Electrostatic, and Dynamic Polymer Forces at Silicone Surfaces Modified with Long-Chain Bolaform Surfactants

机译:长链Bolaform表面活性剂改性的有机硅表面的疏水,静电和动态聚合物力

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摘要

Surfactant self-assembly on surfaces is an effective way to tailor the complex forces at and between hydrophobic-water interfaces. Here, the range of structures and forces that are possible at surfactant-adsorbed hydrophobic surfaces are demonstrated: certain long-chain bolaform surfactants-containing a polydimethylsiloxane (PDMS) mid-block domain and two cationic alpha, omega-quarternary ammonium end-groups-readily adsorb onto thin PDMS films and form dynamically fluctuating nanostructures. Through measurements with the surface forces apparatus (SFA), it is found that these soft protruding nanostructures display polymer-like exploration behavior at the PDMS surface and give rise to a long-ranged, temperature-and rate-dependent attractive bridging force (not due to viscous forces) on approach to a hydrophilic bare mica surface. Coulombic interactions between the cationic surfactant end-groups and negatively-charged mica result in a rate-dependent polymer bridging force during separation as the hydrophobic surfactant mid-blocks are pulled out from the PDMS interface, yielding strong adhesion energies. Thus, (i) the versatile array of surfactant structures that may form at hydrophobic surfaces is highlighted, (ii) the need to consider the interaction dynamics of such self-assembled polymer layers is emphasized, and (iii) it is shown that long-chain surfactants can promote robust adhesion in aqueous solutions.
机译:表面活性剂在表面上的自组装是一种有效的方法,可以调节疏水-水界面处和界面之间的复合力。在此,证明了在表面活性剂吸附的疏水性表面上可能存在的结构和作用力范围:某些长链硼状表面活性剂,其中包含聚二甲基硅氧烷(PDMS)中间嵌段域和两个阳离子α,ω-季铵盐端基-容易吸附到PDMS薄膜上并形成动态波动的纳米结构。通过使用表面力装置(SFA)进行的测量,发现这些柔软的突出纳米结构在PDMS表面表现出类似聚合物的探索行为,并产生了长期的,取决于温度和速率的吸引力桥接力(不是由于粘性力)接近亲水性云母裸露表面。阳离子表面活性剂端基与带负电的云母之间的库伦相互作用导致分离过程中速率依赖性的聚合物桥联力,因为疏水性表面活性剂中间嵌段从PDMS界面中拉出,产生了强大的粘附能。因此,(i)强调了可能在疏水表面形成的表面活性剂结构的通用阵列,(ii)强调了考虑这种自组装聚合物层相互作用动力学的需要,并且(iii)显示出链表面活性剂可促进在水溶液中的牢固粘合。

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