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Stable yet hydrophilic graphene oxide nanomembranes by zwitterionic reduction for dye desalination

  • Sagnik Das
  • , Ziwen Zhang
  • , Erda Deng
  • , Emmanuel M. Nsengiyumva
  • , Ruveen Dias
  • , Shixian Ha
  • , Xiao Tong
  • , Gbassey S.A. Oteme
  • , Shweta Singh
  • , Kai Chen
  • , Prathima C. Nalam
  • , Chang Yong Nam
  • , Chong Cheng
  • , Haiqing Lin
  • SUNY Buffalo
  • Stony Brook University
  • Brookhaven National Laboratory

Research output: Contribution to journalArticlepeer-review

1 Scopus citations

Abstract

Holey graphene oxide (HGO) nanosheets have emerged as a promising membrane platform for dye desalination, and they must be reduced to enhance hydrophobicity and stability for long-term underwater operation, which usually decreases water and salt permeance. Herein, we develop a facile method to stabilize HGO nanosheets while retaining their hydrophilicity by reducing them with sulfobetaine amine (SBAm, a superhydrophilic zwitterion), achieving high water and salt permeance and a high salt/dye separation factor. Specifically, HGO nanosheets react with SBAm via an amine-epoxide reaction, rendering reduced HGO nanosheets containing superhydrophilic zwitterions. The effects of in-plane pores, zwitterion content, and layer thickness on the membrane chemistry, structure, and salt/dye separation properties of the SBAm-reduced HGOs (SHGOs) are thoroughly examined. The membrane achieves a Na2SO4/Direct red separation factor of up to 850, surpassing the state-of-the-art GO membranes. Moreover, hollow fiber membrane modules based on SHGOs are fabricated and exhibit stable performance in multi-cycle tests over 100 h of operation with mixed dye-salt solutions, demonstrating the scalability of our approach and its potential for practical applications.

Original languageEnglish
Article number175125
JournalChemical Engineering Journal
Volume534
DOIs
StatePublished - Apr 15 2026

Keywords

  • Dye desalination
  • Holey graphene oxide
  • Nanofiltration
  • Reduction
  • Zwitterion

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