Polymer Electrolyte Membrane Fuel Cell

Author:

Dhathathreyan K. S.,Rajalakshmi N.

Publisher

Springer New York

Reference309 articles.

1. Aceves S M, Perfect S and Weisberg A (2004), Optimum utilization of available space in a vehicle through conformable hydrogen vessels, DOE Hydrogen Program-Progress report.

2. Adamson K A ( 2005), Fuel Cell Today Market Survey: Light Duty Vehicles. Fuel Cell Today, pp. 1–19 (March).

3. Adjemian K T, Lee S J, Srinivasan S, Benziger J, Bocarsly A B (2002) Silicon oxide Nafion composite membranes for proton exchange membrane fuel cell operation at 80–140°C. J Electrochem Soc., 149, pp. A256–A261.

4. Ahn S Y and Le Y C (2005) Effect of the ionomers in the electrode on the performance of PEMFC under non-humidifying conditions, Electrochim Acta, 50, pp. 669–672.

5. Allcock H R, Hofmann M A, Ambler C M (2002) Phenylphosphonic acid functionalized polywaryloxyphosphazene as proton-conducting membranes for direct methanol fuel cells. J Membr Sci., 201, pp. 47–54.

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