Shirke Yogita M, Abou-Elanwar Ali M, Choi Won-Kil, Lee Hyojin, Hong Seong Uk, Lee Hyung Keun, Jeon Jae-Deok
Greenhouse Gas Research Laboratory, Korea Institute of Energy Research (KIER) 152 Gajeong-ro, Yuseong-gu Daejeon 34129 Republic of Korea
Department of Advanced Energy and Technology Korea, University of Science and Technology (UST) 217 Gajeong-ro, Yuseong-gu Daejeon 34113 Republic of Korea.
RSC Adv. 2019 Oct 9;9(55):32121-32129. doi: 10.1039/c9ra06300e. eCollection 2019 Oct 7.
Nanoparticles have been attracting attention because they can significantly improve the performance of membranes when added in small amounts. In this study, the effect of polyamide membranes incorporating hydrophilic nitrogen/phosphorus-doped carbon dots (NP-CDs) to enhance water vapor/N separation has been investigated. NP-CD nanoparticles with many hydrophilic functional groups are synthesized from chitosan by a one-pot green method and introduced to the surface of the polysulfone (PSf) substrates by interfacial polymerization reaction. The mean particle diameter of NP-CDs, estimated from transmission electron microscopy images, is 2.6 nm. By adding NP-CDs (0-1.5 wt%) to the polyamide layer, the contact angles of the membranes dramatically decreased from 65° (PSf) to <9° (thin film nanocomposite (TFN)), which means that the TFN membranes become significantly hydrophilic. From the water vapor separation results, the addition of NP-CDs in the polyamide layer improves the water vapor permeance from 1511 (thin film composite (TFC) without nanoparticles) to 2448 GPU (TFN with 1.0 wt% NP-CD loading, CD-TFN(1.0)) and the water vapor/N selectivity from 73 (TFC) to 854 (CD-TFN(1.0)). To our knowledge, this is the first study of highly functionalized NP-CD-incorporated polyamide membranes to enhance water vapor separation.
纳米颗粒因其少量添加就能显著改善膜的性能而备受关注。在本研究中,对掺入亲水性氮/磷掺杂碳点(NP-CDs)以增强水蒸气/氮气分离性能的聚酰胺膜的效果进行了研究。通过一锅法绿色方法由壳聚糖合成具有许多亲水性官能团的NP-CD纳米颗粒,并通过界面聚合反应将其引入聚砜(PSf)基底表面。根据透射电子显微镜图像估算,NP-CDs的平均粒径为2.6 nm。通过向聚酰胺层中添加NP-CDs(0 - 1.5 wt%),膜的接触角从65°(PSf)急剧降至<9°(薄膜纳米复合膜(TFN)),这意味着TFN膜变得显著亲水性。从水蒸气分离结果来看,在聚酰胺层中添加NP-CDs可将水蒸气透过率从1511(无纳米颗粒的薄膜复合膜(TFC))提高到2448 GPU(NP-CD负载量为1.0 wt%的TFN,CD-TFN(1.0)),并将水蒸气/氮气选择性从73(TFC)提高到854(CD-TFN(1.0))。据我们所知,这是首次关于掺入高功能化NP-CD的聚酰胺膜以增强水蒸气分离的研究。