Broniatowski Marcin, Dynarowicz-Łatka Patrycja
Jagiellonian University, Faculty of Chemistry, Ingardena 3, 30-060 Kraków, Poland.
Langmuir. 2006 Jul 18;22(15):6622-8. doi: 10.1021/la060421f.
A novel surfactant containing pentafluorophenyl moiety attached at the terminal position of undecanol (11,11-difluoro-11-(pentafluorophenyl)undecan-1-ol, abbr. PBD) was synthesized and employed for the Langmuir monolayer characterization and miscibility studies with a semifluorinated alkane (perfluorodecyleicosane, abbr. F10H20) and four alcohols differing in the degree of fluorination in their hydrophobic chains: octadecanol (C18OH), perfluorooctyldecanol (F8H10OH), perfluoroisononyldecanol (iF9H10OH) and 1H,1H-perfluorooctadecanol (F18OH). Pure monolayers of all of the investigated surfactants as well as their mixtures were investigated with surface pressure-area isotherms complemented by Brewster angle microscopy (BAM) images. PBD was found to form stable Langmuir monolayers of liquid-expanded character. Characteristic dendritic structures were formed at the very early stage of compression and remained up to the vicinity of collapse, where 3D crystallites appeared. 2D miscibility studies revealed that PBD forms mixed monolayers with the investigated semifluorinated alkane (F10H20) as well as with perfluorinated alcohol (F18OH) within the whole composition range, do not mix with octadecanol to the fully hydrogenated alcohol, whereas it is partially miscible (up to a certain surface pressure value) with the studied semifluorinated alcohols. The analysis of the miscibility derived from the surface pressure-area isotherms (collapse pressure vs composition dependencies) agrees well with BAM images. Molecular interactions in the investigated systems have been quantified with interaction parameter, alpha.
合成了一种新型表面活性剂,其在十一醇的末端位置连接有五氟苯基部分(11,11-二氟-11-(五氟苯基)十一烷-1-醇,简称PBD),并将其用于Langmuir单分子层表征以及与半氟化烷烃(全氟癸基二十烷,简称F10H20)和四种疏水链氟化程度不同的醇的混溶性研究:十八醇(C18OH)、全氟辛基癸醇(F8H10OH)、全氟异壬基癸醇(iF9H10OH)和1H,1H-全氟十八醇(F18OH)。通过表面压力-面积等温线并辅以布鲁斯特角显微镜(BAM)图像,研究了所有研究的表面活性剂的纯单分子层及其混合物。发现PBD形成具有液体膨胀特性的稳定Langmuir单分子层。在压缩的非常早期阶段形成了特征性的树枝状结构,并一直保持到接近崩塌点,此时出现了三维微晶。二维混溶性研究表明,PBD在整个组成范围内与所研究的半氟化烷烃(F10H20)以及全氟醇(F18OH)形成混合单分子层,与十八醇至完全氢化的醇不混合,而它与所研究的半氟化醇部分混溶(直至一定的表面压力值)。从表面压力-面积等温线(崩塌压力与组成的依赖性)得出的混溶性分析与BAM图像吻合良好。用相互作用参数α对所研究体系中的分子相互作用进行了量化。