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Direct composite polymer membranes

Yang CC, Lee YJ, Chiu SJ, Lee KT, Chien WC, Lin CT, Huang CA (2008) Preparation of PVA/HAP composite polymer membrane for a direct ethanol fuel cell (DEFC). J Appl... [Pg.217]

Yang CC, Chiu SJ, Lin CT (2008) Electrochemical performance of an air-breathing direct methanol fuel cell using poly(vinyl alcohol)/hydroxiapatite composite polymer membrane. J... [Pg.217]

Zeng L, Zhao TS, Li YS (2012) Synthesis and characterization of crosslinked poly(vinyl alcohol)Aayered double hydroxide composite polymer membranes for alkaline direct ethanol fuel cells. Int J Hydrogen Energ 37 18425-18432... [Pg.217]

Yang CC, Chiu SJ, Chien WC, Chiu SS (2010) C)uatemized poly(vinyl alcohol)/alnmina composite polymer membranes for alkaline direct methanol fuel cells. J Power Sources 195 2212-2219... [Pg.217]

Yang CC, Lee YJ, Yang JM (2009) Direct methanol fuel cell (DMFC) based on PVA/MMT composite polymer membranes. J Power Sources 188 30-37... [Pg.222]

Yang CC, Chien WC, Li YJ (2010) Direct methanol fuel cell based on poly(vinyl alcohol)/ titanium oxide nanotubes/poly(styrenesulfonic acid)(PVA/nt-Ti02/PSSA) composite polymer membrane. J Power Sources 195 3407-3415... [Pg.223]

Palladium electroless deposition was used for coating of Nafion 117 for the application as a membrane in direct methanol fuel cell.59 After the activation of the polymer membrane (Nafion 117) with Pd(II) complexes, reduction was carried out with sodium boro-hydride, NaBH4. Further, autocatalytic deposition of palladium was performed using a commercially available solution. Compared to bare Nafion, the Nafion/Pd composites considerably reduced methanol crossover. This resulted in enhanced cell performance, which was attributed to the existence of the Pd layer at the surface of polymer. [Pg.277]

Othman, M.H.D. 2006. The development and characterization of composite polymer/inorganic material membrane for direct methanol fuel cell application. Master Thesis, Universiti TeknologL Malaysia... [Pg.445]

The membrane surface can also be modified by chemical reaction. It is reported that direct fluorination can be effectively used to enhance commercial properties of polymer articles, such as barrier properties of polymer vessels, bottles, and packaging films and envelopes gas-separation properties of polymer membranes adhesion and printability properties of polymer articles and mechanical properties of polymer-based composites [68]. [Pg.50]

This chapter reviews characteristics and performance of modified sulfonic acid-based membranes, particularly composite membranes including inorganic fillers and short-side chain perfluorosulfonic membranes for intermediate temperature applications. The characteristics of these systems for operation in direct alcohol fuel cells, in polymer membrane (PEM) electrolyser and automotive PEM fuel cells are analyzed. [Pg.8]


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See also in sourсe #XX -- [ Pg.118 ]




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