He Gaohong   

Professor
Supervisor of Doctorate Candidates
Supervisor of Master's Candidates

Title : Director of R & D Center of Membrane Science and Technology

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Language:English

Paper Publications

Title of Paper:Hydroxide exchange composite membrane based on soluble quaternized polyetherimide for potential applications in fuel cells

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Date of Publication:2013-06-27

Journal:INTERNATIONAL JOURNAL OF HYDROGEN ENERGY

Included Journals:SCIE、EI

Volume:38

Issue:19

Page Number:7964-7972

ISSN No.:0360-3199

Key Words:Hydroxide exchange membrane; Polyetherimide; Quaternization; Alkaline membrane fuel cell

Abstract:0 A series of soluble quaternized polyetherimides (QAPEIs) have been successfully synthesized by homogeneous quaternization in trimethylamine aqueous solution. H-1 NMR spectra confirm the successful synthesis of QAPEI. The QAPEIs exhibit good solubility in membrane-preparation solvents, making it possible to prepare the QAPEI composite membrane. Novel composite hydroxide exchange membranes have been prepared by incorporating QAPEIs with polytetrafluoroethylene (PTFE) membranes. The SEM images, gas permeation measurements and FTIR spectra show that the QAPEI is successfully filled in PTFE membrane and the resulted composite membrane is dense and smooth. The ion exchange capacity of composite membranes ranges from 0.35 to 0.58 mmol g(-1). The composite membranes have appropriate water uptake (<= 154%) and moderate swelling ratio (<= 42%) even at 60 degrees C. The hydroxide conductivity of the composite membrane reaches 11.9 mS cm(-1) at 20 degrees C that increases to 35.2 mS cm(-1) at 60 degrees C. TGA curve shows that the composite membrane possesses high thermal stability (T-OD: 210 degrees C). All these properties indicate that the QAPEI/PTFE composite membranes are good candidates for use as HEMs in HEM fuel cells. Copyright 2013, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.

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