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Synthesis, Characterization and Performance Study of Phosphosilicate Gel-Sulfonated Poly (Ether Ether Ketone) Nanocomposite Membrane for Fuel Cell Application

Electronic Archive of Sumy State University

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Title Synthesis, Characterization and Performance Study of Phosphosilicate Gel-Sulfonated Poly (Ether Ether Ketone) Nanocomposite Membrane for Fuel Cell Application
 
Creator Dhole, C.K.
Nanda, A.
Kargupta, K.
Ganguly, S.
 
Subject Organic-inorganic nanocomposite
Fuel cell
Phosphosilicate gel
SPEEK
Performance enhancement
 
Description Phosphosilicate gel – SPEEK (Sulfonated Poly Ether Ether Ketone) hybrid nanocomposite membranes
are proposed for performance enhancement of polymer electrolyte fuel cell. The nanocomposite membranes
are synthesized and characterized at 50 and 60 weight percent of inorganic loading. Phosphosilicate gel particles
of varying size (sub micro to nanometer) are synthesized using sol gel approach followed by grinding using
planetary ball mill for different time. Transmission Electron Microscopy (TEM) reveals less than 10 nm
particle size for 20 hr grinding. Nano composite membrane having inorganic particles of size less than 10 nm
exhibits higher values of proton conductivity, ion exchange capacity and water uptake compared to composite
membrane comprising of larger (400 nm and above) inorganic particles. The membrane is assembled with the
electrode in the unit cell and the polarization characteristics are measured at different operating temperatures.
Performance study reveals that between 70 to 80 C the membrane offers best performance in terms of
peak power generation and of allowable load current. For the same conditions 40-50 % nano-enhancement of
peak power generation is achieved by reducing the average gel particle size from sub micro to less than
10 nm. At medium temperature (between 70 to 80 C) the nanocomposite membrane offers more than 100 enhancement
of peak power generation compared to that generated by SPEEK membrane.
 
Publisher Видавництво СумДУ
 
Date 2012-03-29T05:29:25Z
2012-03-29T05:29:25Z
2012
 
Type Article
 
Identifier C.K. Dhole, A. Nanda, K. Kargupta, S. Ganguly, J. Nano-Electron. Phys. 4 No 1, 01015 (2012)
http://essuir.sumdu.edu.ua/handle/123456789/24916
 
Language en