Relationships between microstructure and transport properties of proton-conducting porous PVDF membranes (original) (raw)
PVDF–based proton conducting membranes as electrolytes for polymer fuel cells
Paolo L Ferloni
View PDFchevron_right
Proton Conductivity and Free Volume Properties in Per-Fluorinated Sulfonic acid/PTFE Copolymer for Fuel Cell
E. Abdel-Hady
Acta Physica Polonica A, 2017
View PDFchevron_right
Pore-Water and Proton Transport in Polymer Electrolyte Membrane Fuel Cell: Molecular Dynamics and Mono- and Bimodal Wetting Treatments of Mesopore Hydrated Nafion
Gisuk Hwang
2010
View PDFchevron_right
An NMR study on the molecular dynamic and exchange effects in composite Nafion/sulfated titania membranes for PEMFCs
Giuseppe Ranieri
International Journal of Hydrogen Energy, 2015
View PDFchevron_right
On the development of proton conducting polymer membranes for hydrogen and methanol fuel cells
Siram Rohith
Journal of Membrane Science, 2001
View PDFchevron_right
Characterization of PVdF-HFP/Nafion/AlO[OH]n composite membranes for direct methanol fuel cell (DMFC)
gautam kumar
European Polymer Journal, 2008
View PDFchevron_right
How the Morphology of Nafion-Based Membranes Affects Proton Transport †
Riccardo Narducci
2021
View PDFchevron_right
Water and proton transport properties of hexafluorinated sulfonated poly(arylenethioethersulfone) copolymers for applications to proton exchange membrane fuel cells
Thuy Dang
Journal of Power Sources, 2007
View PDFchevron_right
PVdF-HFP membranes for fuel cell applications: effects of doping agents and coating on the membrane’s properties
Tulay Inan
Ionics, 2012
View PDFchevron_right
An NMR spectroscopic study of water and methanol transport properties in DMFC composite membranes: Influence on the electrochemical behaviour
Vincenzo Baglio
Journal of Power Sources, 2006
View PDFchevron_right
Increases in the proton conductivity and selectivity of proton exchange membranes for direct methanol fuel cells by formation of nanocomposites having proton conducting channels
Michael Guiver
Journal of Power Sources, 2009
View PDFchevron_right
A novel PTFE-based proton-conductive membrane
S. Reichman, T. Duvdevani
Journal of Power Sources, 2006
View PDFchevron_right
Structural, thermal and ion transport studies of different particle size nanocomposite fillers incorporated PVdF-HFP hybrid membranes
nimma elizabeth
Materials Chemistry and Physics, 2009
View PDFchevron_right
The effect of side chain architectures on the properties and proton conductivities of poly(styrene sulfonic acid) graft poly(vinylidene fluoride) copolymer membranes for direct methanol fuel cells
Yi-Ming Sun
Journal of Membrane Science, 2010
View PDFchevron_right
Consideration of thermodynamic, transport, and mechanical properties in the design of polymer electrolyte membranes for higher temperature fuel cell operation
Ravindra Datta
Journal of Polymer Science Part B, 2006
View PDFchevron_right
Pore size tuning of Nafion membranes by UV irradiation for enhanced proton conductivity for fuel cell applications
Arjun Sunil Rao
International Journal of Hydrogen Energy, 2019
View PDFchevron_right
Water transport in polymer electrolyte membrane fuel cells
Xianguo Li
2011
View PDFchevron_right
An Investigation of Proton Conductivity of Vinyltriazole-Grafted PVDF Proton Exchange Membranes Prepared via Photoinduced Grafting
Ali Ekrem Muftuoglu
Journal of Chemistry, 2014
View PDFchevron_right
Proton conductivity and characterization of novel composite membranes for medium-temperature fuel cells
Dr Javaid Zaidi
Desalination, 2006
View PDFchevron_right
Conductivity measurement of different polymer membranes for fuel cells
Guntars Vaivars
Russian Journal of Electrochemistry, 2009
View PDFchevron_right
The Ionic Conductivity of a Nafion® 1100 Series of Proton-exchange Membranes Re-cast from Butan-1-ol and Propan-2-ol
Frank Walsh
Fuel Cells, 2010
View PDFchevron_right
NMR investigation of water and methanol mobility in nanocomposite fuel cell membranes
Steve Greenbaum
Ionics, 2008
View PDFchevron_right
Investigation of perfluorinated proton exchange membranes prepared via a facile strategy of chemically combining poly(vinylphosphonic acid) with PVDF by means of poly(glycidyl methacrylate) grafts
Ali Ekrem Muftuoglu
Journal of Polymer Research, 2015
View PDFchevron_right
A macroscopic model of proton transport through the membrane-ionomer interface of a polymer electrolyte membrane fuel cell
Brian Edwards
The Journal of Chemical Physics, 2013
View PDFchevron_right
Methanol permeability and properties of DMFC membranes based on sulfonated PEEK/PVDF blends
Narumon Seeponkai
Journal of Applied Polymer Science, 2006
View PDFchevron_right
Characteristics of PVdF copolymer/Nafion blend membrane for direct methanol fuel cell (DMFC)
Yung-eun Sung
Electrochimica Acta, 2004
View PDFchevron_right
Highly fluorinated comb-shaped copolymer as proton exchange membranes (PEMs): Fuel cell performance
Michael Guiver
Journal of Power Sources, 2008
View PDFchevron_right
Characterization and evaluation of commercial poly (vinylidene fluoride)-g-sulfonatedPolystyrene as proton exchange membrane
Somia Awad
Copyright © 2017 John Wiley & Sons, Ltd., 2017
View PDFchevron_right
Inorganic–organic membranes based on Nafion, [(ZrO2)·(HfO2)0.25] and [(SiO2)·(HfO2)0.28]. Part I: Synthesis, thermal stability and performance in a single PEMFC
Steven Greenbaum
International Journal of Hydrogen Energy, 2012
View PDFchevron_right