论文标题
氟化会在宏观水平上提高疏水性,但在微观水平上不增加
Fluorination Increases Hydrophobicity at the Macroscopic Level but not at the Microscopic Level
论文作者
论文摘要
过去已经根据疏水聚合物(例如聚苯乙烯(PS))进行了详细研究疏水相互作用。由于氟化材料具有相对较低的表面能,因此它们在宏观水平上通常表现出含水量和疏水性。然而,疏水聚合物的氟化如何在微观水平上影响疏水性。在这项工作中,我们通过可逆添加裂片转移聚合方法合成了PS和氟取代的PS(FPS)。接触角测量结果证实,由于引入氟,在宏观水平上,FPS比PS更疏水。然而,单分子力光谱实验表明,在水中展开PS和FPS纳米颗粒所需的力是无法区分的,这表明疏水Fect的强度在微观级别驱动PS和FPS纳米颗粒的自组件是相同的。在宏观和微观水平上疏水作用的差异可能会暗示不同的潜在机制:疏水性在微观水平上的溶剂水合和在宏观镜水平上的表面相关相互作用所占据主导地位。
Hydrophobic interactions have been studied in detail in the past based on hydrophobic polymers, such as polystyrene (PS). Because fluorinated materials have relatively low surface energy, they often show both oleophobicity and hydrophobicity at the macroscopic level. However, it remains unknown how fluorination of hydrophobic polymer influences hydrophobicity at the microscopic level. In this work, we synthesized PS and fluorine-substituted PS (FPS) by reversible addition-fragmentation chain transfer polymerization method. Contact angle measurements confirmed that FPS is more hydrophobic than PS at the macroscopic level due to the introduction of fluorine. However, single molecule force spectroscopy experiments showed that the forces required to unfold the PS and FPS nanoparticles in water are indistinguishable, indicating that the strength of the hydrophobic ffect that drives the self-assembly of PS and FPS nanoparticles is the same at the microscopic level. The divergence of hydrophobic effect at the macroscopic and microscopic level may hint different underlying mechanisms: the hydrophobicity is dominated by the solvent hydration at the microscopic level and the surface-associated interaction at the macroscopic level.