Instituto de Nanociencia de Aragón (INA) and Departamento de Química Física, Universidad de Zaragoza, C/ Pedro Cerbuna 12, 50009 Zaragoza, Spain.
Chemical and Environmental Engineering Department and Instituto de Nanociencia de Aragón (INA), Universidad de Zaragoza, 50018 Zaragoza, Spain.
J Colloid Interface Sci. 2019 Feb 15;536:474-482. doi: 10.1016/j.jcis.2018.10.075. Epub 2018 Oct 25.
The expansion of the use of polymeric membranes in gas separation requires the development of membranes based on new polymers with improved properties and their assessment under real operating conditions. In particular, the fabrication of ultrathin films of high performance polymers that can be used as the selective layer in composite membranes will allow large reductions in the amount of the expensive polymer used and, hence, the cost of membrane fabrication. In this contribution, two polymers of intrinsic microporosity (PIMs) with very different chain configurations (two-dimensional, 2D, chains or conventional contorted three-dimensional, 3D, conformation) have been compared in their ability to form ultrathin films, showing the relevance of polymer design to obtain compact and defect-free films. Monolayers of the 2D polymer PIM-TMN-Trip can be efficiently deposited onto poly[1-(trimethylsilyl)-1-propyne] (PTMSP) to obtain composite membranes with a CO/N selectivity similar to that of the corresponding thick membranes of the same PIM using only a small fraction of the selective polymer (less than 0.1%).
聚合物膜在气体分离中的应用不断扩大,这就需要开发基于具有改进性能的新型聚合物的膜,并在实际操作条件下对其进行评估。特别是,制造可作为复合膜中选择性层的高性能聚合物的超薄薄膜,将允许大大减少昂贵聚合物的用量,从而降低膜制造的成本。在本研究中,比较了两种具有非常不同链构象的本征微孔聚合物(PIMs)在形成超薄薄膜方面的能力,表明聚合物设计对于获得致密且无缺陷的薄膜具有重要意义。二维聚合物 PIM-TMN-Trip 的单层可以有效地沉积在聚[1-(三甲基甲硅烷基)-1-丙炔](PTMSP)上,以获得 CO/N 选择性类似于相同 PIM 的相应厚膜的复合膜,而仅使用选择性聚合物的一小部分(小于 0.1%)。