4.6 Article

Functionalized Graphene Oxide-Based Lamellar Membranes with Tunable Nanochannels for Ionic and Molecular Separation

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ACS OMEGA
卷 -, 期 -, 页码 -

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AMER CHEMICAL SOC
DOI: 10.1021/acsomega.2c03907

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  1. State Key Laboratory of Multiple Complex Systems, Institute of Process Engineering (IPE) , Chinese Academy of Sciences [MPCS-2021-A-05]
  2. Ministry of Science and Technology China
  3. National Science Foundation of China [22075290]
  4. CAS-TWAS Fellowship

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By functionalizing GO-based membranes, a class of 2D GO lamellar membranes with controlled pores have been prepared, showing excellent performance in ion and dye separation.
Graphene oxide (GO)-based membranes with tunable microstructure and controlled nanochannels have attracted an increasing interest for various applications in wastewater treatment, desalination, gas separation, organic nanofiltration, etc. However, they showed limited use in water desalination due to their lower stability and separation efficiency. In this work, a class of two-dimensional (2D) GO lamellar membranes have been prepared with controlled pores for efficient and fast separation of ions and dye molecules. The GO membranes are fucntionalized with a star-like 6-armed poly(ethylene oxide) using the simple amidation route under mild conditions. The as-prepared covalently cross-linked networks are chemically steady in aqueous medium and show remarkable selectivity (similar to 100%) for several probe molecules and 10-100 higher permeance than those of the reported GO-based membranes. Further, such membranes are also used for salt separation and show more than 80% rejection for Pb2+ and Ni2+ salts. Moreover, a 1360 nm-thick membrane shows >99% rejection for NaCl with a good water permeance of up to 120 L m(-2) bar(-1). Additionally, these membranes are stable for more than 20 days under different conditions.

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