Foglia Fabrizia, Frick Bernhard, Nania Manuela, Livingston Andrew G, Cabral João T
Department of Chemical Engineering, Imperial College London, London, SW7 2AZ, UK.
Department of Chemistry, Christopher Ingold Laboratory, University College London, London, WC1H 0AJ, UK.
Nat Commun. 2022 May 19;13(1):2809. doi: 10.1038/s41467-022-30555-6.
While polyamide (PA) membranes are widespread in water purification and desalination by reverse osmosis, a molecular-level understanding of the dynamics of both confined water and polymer matrix remains elusive. Despite the dense hierarchical structure of PA membranes formed by interfacial polymerization, previous studies suggest that water diffusion remains largely unchanged with respect to bulk water. Here, we employ neutron spectroscopy to investigate PA membranes under precise hydration conditions, and a series of isotopic contrasts, to elucidate water transport and polymer relaxation, spanning ps-ns timescales, and Å-nm lengthscales. We experimentally resolve, for the first time, the multimodal diffusive nature of water in PA membranes: in addition to (slowed down) translational jump-diffusion, we observe a long-range and a localized mode, whose geometry and timescales we quantify. The PA matrix is also found to exhibit rotational relaxations commensurate with the nanoscale confinement observed in water diffusion. This comprehensive 'diffusion map' can anchor molecular and nanoscale simulations, and enable the predictive design of PA membranes with tuneable performance.
虽然聚酰胺(PA)膜在通过反渗透进行水净化和脱盐方面广泛应用,但对受限水和聚合物基质动力学的分子水平理解仍然难以捉摸。尽管通过界面聚合形成的PA膜具有致密的层次结构,但先前的研究表明,相对于 bulk 水,水的扩散在很大程度上保持不变。在这里,我们采用中子光谱法在精确的水合条件下研究PA膜,并利用一系列同位素对比,以阐明跨越皮秒至纳秒时间尺度和埃至纳米长度尺度的水传输和聚合物弛豫。我们首次通过实验解析了PA膜中水的多峰扩散性质:除了(减慢的)平移跳跃扩散外,我们还观察到一种长程模式和一种局域模式,并对其几何形状和时间尺度进行了量化。还发现PA基质表现出与在水扩散中观察到的纳米级限制相称的旋转弛豫。这种全面的“扩散图谱”可以为分子和纳米级模拟提供支撑,并实现具有可调性能的PA膜的预测性设计。