Université Paris Est, ICMPE (UMR7182), CNRS, UPEC , F 94320 Thiais, France.
Institute of Materials and Environmental Chemistry, Research Centre for Natural Sciences, Hungarian Academy of Sciences , P.O. Box 286, 1519 Budapest, Hungary.
Langmuir. 2017 Aug 15;33(32):8052-8061. doi: 10.1021/acs.langmuir.7b01941. Epub 2017 Aug 1.
The effect of headgroup variation on the association of supramolecular amphiphiles composed of 4-sulfonatocalix[6]arene (SCX6) and cationic surfactant possessing tetradecyl substituent was studied in aqueous solutions at pH 7. When the surfactant contained hydrophilic trimethylammonium, pyridinium, or 1-methylimidazolium headgroup, highly reversible temperature-responsive nanoparticle-supramolecular micelle transformation could be attained at appropriately chosen component mixing ratios and NaCl concentrations. In these cases, the substantial negative molar heat capacity change (ΔC) rendered nanoparticle formation strongly endothermic at low temperature, whereas the assembly to supramolecular micelle was always accompanied by enthalpy gain. The ΔC values became less negative when the charge density and the hydrophilic character of the surfactant headgroup diminished. The association of the more hydrophobic 6-methoxyquinolinium and quinolinium surfactants with SCX6 did not lead to supramolecular micelle formation because the self-assembly into nanoparticles was highly exothermic.
研究了在 pH 7 的水溶液中,由 4-磺酸钠杯[6]芳烃(SCX6)和带有十四烷基取代基的阳离子表面活性剂组成的超分子两亲体的头基变化对其缔合的影响。当表面活性剂含有亲水性三甲基铵、吡啶鎓或 1-甲基咪唑鎓头基时,在适当选择的组分混合比和 NaCl 浓度下,可以实现高度可逆的温度响应纳米颗粒-超分子胶束转化。在这些情况下,大量的负摩尔热容变化(ΔC)使得纳米颗粒的形成在低温下强烈吸热,而组装成超分子胶束总是伴随着焓的增加。当表面活性剂头基的电荷密度和亲水性降低时,ΔC 值变得不那么负。由于自组装成纳米颗粒是高度放热的,疏水性更强的 6-甲氧基喹啉鎓和喹啉鎓表面活性剂与 SCX6 的缔合并未导致超分子胶束的形成。