Kim Minsu, Choi Wooyoung, Lee Choong Hoo, Kim Dae Woo
Department of Chemical and Biomolecular Engineering, Yonsei University, Yonsei-ro 50, Seodaemun-gu, Seoul 03722, Republic of Korea.
ACS Mater Au. 2023 Dec 12;4(2):148-161. doi: 10.1021/acsmaterialsau.3c00072. eCollection 2024 Mar 13.
Commercial membranes have predominantly been fabricated from polymers due to their economic viability and processability. This choice offers significant advantages in energy efficiency, cost-effectiveness, and operational simplicity compared to conventional separation techniques like distillation. However, polymeric membranes inherently exhibit a trade-off between their permeability and selectivity, which is summarized in the Robeson upper bound. To potentially surpass these limitations, mixed-matrix membranes (MMMs) can be an alternative solution, which can be constructed by combining polymers with inorganic additives such as metal-organic frameworks (MOFs) and zeolites. Incorporating high-aspect-ratio fillers like MOF nanosheets and zeolite nanosheets is of significant importance. This incorporation not only enhances the efficiency of separation processes but also reinforces the mechanical robustness of the membranes. We outline synthesis techniques for producing two-dimensional (2D) crystals (including nanocrystals with high aspect ratio) and provide examples of their integration into membranes to customize separation performances. Moreover, we propose a potential trajectory for research in the area of high-aspect-ratio materials-based MMMs, supported by a mathematical-model-based performance prediction.
由于具有经济可行性和可加工性,商业膜主要由聚合物制成。与蒸馏等传统分离技术相比,这种选择在能源效率、成本效益和操作简便性方面具有显著优势。然而,聚合物膜在渗透性和选择性之间存在内在的权衡,这在罗伯逊上限中有所体现。为了潜在地超越这些限制,混合基质膜(MMM)可以作为一种替代解决方案,它可以通过将聚合物与无机添加剂(如金属有机框架(MOF)和沸石)结合来构建。掺入高纵横比的填料,如MOF纳米片和沸石纳米片,具有重要意义。这种掺入不仅提高了分离过程的效率,还增强了膜的机械强度。我们概述了生产二维(2D)晶体(包括高纵横比的纳米晶体)的合成技术,并提供了将其集成到膜中以定制分离性能的示例。此外,我们在基于数学模型的性能预测的支持下,提出了基于高纵横比材料的MMM领域的潜在研究轨迹。