Kwon Hyuntak, Park Yongju, Yang Euntae, Bae Tae-Hyun
Department of Chemical and Biomolecular Engineering, Korea Advanced Institute of Science and Technology (KAIST), 291 Daehak-ro, Yuseong-gu, Daejeon 34141, Korea.
Department of Marine Environmental Engineering, College of Marine Science, Gyeongsang National University, Tongyeong 53064, Korea.
Membranes (Basel). 2022 Oct 2;12(10):966. doi: 10.3390/membranes12100966.
Graphene oxide (GO), a carbonaceous 2D nanomaterial, has received significant interest as a next-generation membrane building block. To fabricate high-performance membranes, an effective strategy involves stacking GO nanosheets in laminated structures, thereby creating unique nanochannel galleries. One outstanding merit of laminar GO membranes is that their permselectivity is readily tunable by tailoring the size of the nanochannels. Here, a high-performance GO-based nanofiltration membrane was developed by intercalating an aromatic crosslinker, α,α/-dichloro-p-xylene (DCX), between the layers in laminated GO nanosheets. Owing to the formation of strong covalent bonds between the crosslinker and the GO, the resulting GO laminate membrane exhibited outstanding structural stability. Furthermore, due to the precisely controlled and enlarged interlayer spacing distance of the developed DCX-intercalated GO membrane, it achieved an over two-fold enhancement in water permeability (11 ± 2 LMH bar) without sacrificing the rejection performance for divalent ions, contrary to the case with a pristine GO membrane.
氧化石墨烯(GO)是一种碳质二维纳米材料,作为下一代膜构建材料受到了广泛关注。为了制备高性能膜,一种有效的策略是将GO纳米片堆叠成层状结构,从而形成独特的纳米通道阵列。层状GO膜的一个突出优点是,通过调整纳米通道的尺寸,其渗透选择性很容易调节。在此,通过在层状GO纳米片层间插入芳香族交联剂α,α'-二氯对二甲苯(DCX),制备了一种高性能的基于GO的纳滤膜。由于交联剂与GO之间形成了强共价键,所得的GO层压膜表现出出色的结构稳定性。此外,由于所制备的DCX插层GO膜的层间距得到精确控制且增大,与原始GO膜的情况相反,它在不牺牲二价离子截留性能的情况下,实现了水渗透性提高两倍以上(11±2 LMH bar)。