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首页> 外文期刊>Journal of Dispersion Science and Technology >Wettability of amphiphilic poly(amido amine) (PAMAM) dendrimers on quartz: Effect of electrostatic and hydrophobic interaction
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Wettability of amphiphilic poly(amido amine) (PAMAM) dendrimers on quartz: Effect of electrostatic and hydrophobic interaction

机译:含有两亲的聚(Amido胺)(PAMAM)树枝状晶胞的润湿性 - 静电和疏水相互作用的影响

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摘要

Wettability of amphiphilic poly(amido amine) (PAMAM) dendrimer on quartz surfaces was studied as a function of structure differences. The dependence of contact angle on concentration presented various tendencies with the increase of hydrophobic chain length, in which, maximum value of -log C curve occurred only for QPAMC(16) with more hydrophobicity. However, slightly changes were observed in the tendency of contact angle versus concentration specifically for QPAMC(12), with large contact angle value emerged instead, indicating a large hydrophobic group density on quartz surface differing from that of traditional surfactants. In addition, the amphiphilic dendrimer with long hydrophobic chain has obvious ability to alter the wettability of oil-wet surfaces.Quantitative and qualitative descriptions of the adsorption were investigated to explore the wettability nature. Significant morphological differences in QPAMC(m) were observed after adsorption on quartz, which transformed from spherical micelles into hemimicelles for QPAMC(8) induced by the affinity of molecules onto the surface, however, regularly spherical aggregates tended to form for QPAMC(12) and QPAMC(16), and the size and thickness have dependence of bulk concentration. The results indicated that the affinity of head group and the self-association driven by the chain length for amphiphilic dendrimers revealed synergistic effect both in adsorption and wetting properties.
机译:研究了两亲性聚酰胺(PAMAM)树枝状大分子在石英表面的润湿性,并将其作为结构差异的函数。随着疏水链长度的增加,接触角与浓度的关系呈现出不同的趋势,其中,只有疏水性较强的QPAMC(16)才出现-log C曲线的最大值。然而,对于QPAMC(12),接触角与浓度的趋势略有变化,反而出现了较大的接触角值,表明石英表面的疏水基团密度与传统表面活性剂不同。此外,具有长疏水链的两亲树状大分子具有明显的改变油湿表面润湿性的能力。定量和定性描述的吸附进行了调查,以探索润湿性的性质。在石英上吸附后,观察到QPAMC(m)的显著形态差异。由于分子与表面的亲和力,石英将QPAMC(8)从球形胶束转变为半胶束。然而,QPAMC(12)和QPAMC(16)倾向于形成规则的球形聚集体,其大小和厚度与体积浓度有关。结果表明,两亲性树枝状大分子的头基亲和力和链长驱动的自缔合在吸附和润湿性能方面均表现出协同效应。

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