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Room-Temperature Synthesis of a COFs Membrane Via LBL Self-Assembly Strategy for Energy Harvesting

  • Caili Zhang
  • , Tianliang Xiao
  • , Jianwei He
  • , Bingxin Lu
  • , Xuejiang Li
  • , Jin Zhai*
  • , Xia Fan*
  • *Corresponding author for this work
  • Beihang University

Research output: Contribution to journalArticlepeer-review

Abstract

The covalent organic frameworks (COFs) membrane with ordered and confined one-dimensional channel has been considered as a promising material to harvest the salinity gradient energy from the seawater and river water. However, the application of the COFs in the field of energy conversion still faces the challenges in membrane preparation. Herein, energy harvesting is achieved by taking advantage of a COFs membrane where TpDB-HPAN is synthesized via layer-by-layer self-assembly strategy at room temperature. The carboxy-rich TpDB COFs can be expediently assembled onto the substrate with an environmental-friendly method. The increased open-circuit voltage (Voc) endows TpDB-HPAN membrane with a remarkable energy harvesting performance. More importantly, the application perspective is also illuminated by the cascade system. With the advantages of green synthesis, the TpDB-HPAN membrane can be considered as a low-cost and promising candidate for energy conversion.

Original languageEnglish
Article number2301512
JournalSmall
Volume19
Issue number37
DOIs
StatePublished - 13 Sep 2023

Keywords

  • covalent organic frameworks (COFs)
  • energy conversion
  • layer-by-layer (LBL) self-assembly strategy
  • room temperature synthesis

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