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Facilitated Water Transport through Graphene Oxide Membranes Functionalized with Aquaporin-Mimicking Peptides

  • Chang Seon Lee
  • , Moon Ki Choi
  • , Ye Young Hwang
  • , Hyunki Kim
  • , Moon Ki Kim
  • , Yun Jung Lee
  • Hanyang University
  • Sungkyunkwan University

Research output: Contribution to journalArticlepeer-review

Abstract

Water purification by membranes is widely investigated to address concerns related to the scarcity of clean water. Achieving high flux and rejection simultaneously is a difficult challenge using such membranes because these properties are mutually exclusive in common artificial membranes. Nature has developed a method for this task involving water-channel membrane proteins known as aquaporins. Here, the design and fabrication of graphene oxide (GO)-based membranes with a surface-tethered peptide motif designed to mimic the water-selective filter of natural aquaporins is reported. The short RF8 (RFRFRFRF, where R and F represent arginine and phenylalanine, respectively) octapeptide is a concentrated form of the core component of the Ar/R (aromatic/arginine) water-selective filter in aquaporin. The resulting GO-RF8 shows superior flux and high rejection similar to natural aquaporins. Molecular dynamics simulation reveal the unique configuration of RF8 peptides and the transport of water in GO-RF8 membranes, supporting that RF8 effectively emulates the core function of aquaporins.

Original languageEnglish
Article number1705944
JournalAdvanced Materials
Volume30
Issue number14
DOIs
StatePublished - 5 Apr 2018

Keywords

  • biomimetic
  • graphene oxide
  • membranes
  • recognition
  • selectivity

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