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A Holey 2D MoS2-Based Membrane with Mo-Rich Edges for Water Desalination

  • Biswajit Mondal
  • , Sudhin Rathnakumaran
  • , Amrita Chakraborty
  • , Pragin Chettiyankandy
  • , Pillalamarri Srikrishnarka
  • , Md Rabiul Islam
  • , Jenifer Shantha Kumar
  • , Ramesh Kumar
  • , Sandeep Bose
  • , Sooraj Kunnikuruvan
  • , Thalappil Pradeep
  • Indian Institute of Technology Madras
  • Birla Institute of Technology and Science Pilani

Research output: Contribution to journalArticlepeer-review

2 Scopus citations

Abstract

Developing thin-film composite membranes that simultaneously exhibit high water permeability and ion rejection (IR) remains a persistent challenge in desalination research. Here, we report the fabrication of polyamide (PA) membranes embedded with holey molybdenum disulfide nanosheets via controlled interfacial polymerization. The introduction of nanoscale Mo-rich pores within MoS2 provides low-friction water transport channels, while maintaining effective ion exclusion. Systematic optimization of interfacial polymerization conditions─specifically monomer contact time of 60 s each and nanosheet loading of 0.01 wt % resulted in an optimal water flux (WF) of ∼96 L m–2 h–1 and IR of ∼99.4%, outperforming both pristine PA and nonporous MoS2-based membranes. Molecular dynamics simulations revealed that water molecules align preferentially along hydrophilic Mo-edge sites, forming ordered, high-density transport channels responsible for the observed flux enhancement. Together, the experimental and computational results establish holey MoS2-embedded PA membranes as a promising platform for next-generation nanofiltration and desalination technologies.

Original languageEnglish
Pages (from-to)23814-23823
Number of pages10
JournalACS Applied Nano Materials
Volume8
Issue number49
DOIs
StatePublished - 12 Dec 2025
Externally publishedYes

Bibliographical note

Publisher Copyright:
© 2025 American Chemical Society

Keywords

  • ambient electrospray deposition
  • desalination of water
  • interfacial polymerization
  • membrane
  • Mo-rich holey MoS

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