School of Biological & Chemical Sciences, Queen Mary, University of London, Joseph Priestley Building, Mile End Road, London E1 4NS, United Kingdom.
Langmuir. 2010 Dec 7;26(23):18194-8. doi: 10.1021/la103620b. Epub 2010 Nov 4.
The adsorbed amount of partially deuterated dihexadecyl-diaza-18-crown-6 ether (d-ACE16) in the presence of different chain length fatty acids as a function of surface pressure was determined by neutron reflectometry technique. The highest adsorbed amount of the azacrown ether was observed for the mixture of ACE16 with hexadecanoic (palmitic) acid, pointing to the importance of chain length matching between the two species for optimum stabilization of the mixed monolayer. The contrast variation technique was used to estimate the contribution to the total adsorbed amount from stearic acid and ACE16. It was found that the mixed Langmuir monolayer is stable against dissolution up to a surface pressure of 20 mN m(-1). Above this pressure, however, the spread and adsorbed amounts start to deviate, indicative of partial dissolution into the aqueous subphase. The consequences of this behavior for the transport of metal ions through the interfaces of permeation liquid membranes (PLMs) are discussed.
通过中子反射谱技术,测定了部分氘代二己基二氮杂-18-冠-6 醚(d-ACE16)在不同链长脂肪酸存在下的表面压力作为函数的吸附量。对于 ACE16 与十六烷酸(棕榈酸)的混合物,观察到最高的氮杂冠醚的吸附量,表明两种物质之间的链长匹配对于混合单层的最佳稳定化非常重要。对比度变化技术用于估计来自硬脂酸和 ACE16 的总吸附量的贡献。结果发现,混合 Langmuir 单层在 20 mN m(-1) 的表面压力下稳定,不会溶解。然而,在这个压力以上,铺展和吸附量开始偏离,表明部分溶解到水亚相中。讨论了这种行为对金属离子通过渗透液膜(PLM)界面传输的影响。