Sunday Daniel F, Chan Edwin P, Orski Sara V, Nieuwendaal Ryan C, Stafford Christopher M
Materials Science and Engineering Division, National Institute of Standards and Technology, Gaithersburg, Maryland 20899, USA.
Phys Rev Mater. 2018 Mar;2(3). doi: 10.1103/PhysRevMaterials.2.032601. Epub 2018 Mar 15.
Polyamide nanomembranes are at the heart of water desalination, a process which plays a critical role in clean water production. Improving their efficiency requires a better understanding of the relationship between chemistry, network structure, and performance but few techniques afford compositional information in ultrathin films (<100 nm). Here, we leverage resonant soft x-ray reflectivity, a measurement that is sensitive to the specific chemical bonds in organic materials, to quantify the functional group concentration in these polyamides. We first employ reference materials to establish quantitative relationships between changes in the optical constants and functional group density, and then use the results to evaluate the functional group concentrations of polyamide nanomembranes. We demonstrate that the difference in the amide carbonyl and carboxylic acid group concentrations can be used to calculate the crosslink density, which is shown to vary significantly across three different polyamide chemistries. A clear relationship is established between the functional group density and the permselectivity (), indicating that more densely crosslinked materials result in a higher of the nanomembranes. Finally, measurements on a polyamide/poly(acrylic acid) bilayer demonstrate the ability of this approach to quantify depth-dependent functional group concentrations in thin films.
聚酰胺纳米膜是海水淡化的核心,海水淡化过程在清洁水生产中起着关键作用。提高其效率需要更好地理解化学、网络结构和性能之间的关系,但很少有技术能提供超薄薄膜(<100 nm)中的成分信息。在这里,我们利用共振软X射线反射率,这种测量方法对有机材料中的特定化学键敏感,来量化这些聚酰胺中的官能团浓度。我们首先使用参考材料来建立光学常数变化与官能团密度之间的定量关系,然后用结果评估聚酰胺纳米膜的官能团浓度。我们证明,酰胺羰基和羧酸基团浓度的差异可用于计算交联密度,结果表明三种不同聚酰胺化学结构的交联密度差异显著。官能团密度与渗透选择性()之间建立了明确的关系,表明交联更密集的材料会使纳米膜的渗透选择性更高。最后,对聚酰胺/聚(丙烯酸)双层膜的测量证明了这种方法能够量化薄膜中深度依赖的官能团浓度。