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Mechanically and structurally robust sulfonated block copolymer membranes for water purification applications

  • J. Yeo*
  • , S. Y. Kim
  • , S. Kim
  • , D. Y. Ryu
  • , T. H. Kim
  • , M. J. Park
  • *Corresponding author for this work
  • Pohang University of Science and Technology
  • Research Institute of Industrial Science & Technology, Pohang
  • Yonsei University
  • Korea Atomic Energy Research Institute

Research output: Contribution to journalJournal articlepeer-review

Abstract

The effective removal of ionic pollutants from contaminated water using negatively charged nanofiltration membranes is demonstrated. Block copolymers comprising polystyrene (PS) and partially hydrogenated polyisoprene (hPI) were synthesized by varying chain architectures. A one step procedure of cross-linking (hPI blocks) and sulfonation reactions (PS chains) was then carried out, which was revealed as an effective method to enhance mechanical integrity of membranes while hydrophilic sulfonated chains remain intact. In particular, the control of chain architecture allows us to create a synergetic effect on optimizing charge densities of the membrane, water permeability, and mechanical integrity under water purification conditions. The best performing membrane can almost completely (>99%) reject various divalent cations and also show NO 3 rejection >85% and Na + rejection >87%. Well defined nanostructures (tens of nanometers) as well as the periodically arranged water domains (a few nanometers) within hydrophilic phases of the hydrated membranes were confirmed by in situ neutron scattering experiments.

Original languageEnglish
Article number245703
JournalNanotechnology
Volume23
Issue number24
DOIs
StatePublished - 2012.06.22

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 6 - Clean Water and Sanitation
    SDG 6 Clean Water and Sanitation

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