Fuel of proton exchange membrane fuel cells (PEMFC) mostly comes from reformate containing CO. which will poison the fuel cell electrocatalyst. The effect of CO on the performance of PEMFC is studied in this paper. Several electrode structures are investigated for CO containing fuel. The experimental results show that thin-film catalyst electrode has higher specific catalyst activity and traditional electrode structure can stand for CO poisoning to some extent. A composite electrode structure is proposed for improving CO tolerance of PEMFCs. With the same catalyst loading. the new composite electrode has improved cell performance than traditional electrode with PtRu/C electrocatalyst for both pure hydrogen and CO/H-2. The EDX test of compos...
Carbon monoxide (CO) poisoning mitigation is an important technological and fundamental challenge in...
A modified subcell approach was adopted to evaluate the current density distributions of proton exch...
ABSTRACT The present state-of-art Proton Exchange Membrane Fuel Cell (PEMFC) technology is based on ...
Fuel cells are electrochemical devices that convert the available chemical free energy directly into...
Practical PEM fuel cells based on perfluorinated ionomer membranes (eg Nafion), most probably will u...
CO-tolerant anode catalysts for reformate-type polymer electrolyte fuel cells are proposed and evalu...
We have investigated the possibility of developing high-performance, cost-effective and durable non-...
Electrodeposited and sprayed Pt anode catalysts were electrochemically characterised by CO stripping...
CO tolerance electrocatalyst of PtRu-HxMeO3/C is prepared by a composite support method, which overc...
Proton-exchange membrane fuel cell (PEMFC) is one of the strongest contenders as a power source for ...
Proton exchange membrane (PEM) fuel cells are efficient energy converters that convert chemical ener...
In this work, we present the design of an external reference electrode for high-temperature PEM fuel...
Commercialization of proton exchange membrane fuel cells (PEMFCs) requires less expensive catalysts ...
The electrocatalysis of CO tolerance of Pt/C, PtRu/C, PtFe/C, PtMo/C, and PtW/C at a PEM fuel cell a...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
Carbon monoxide (CO) poisoning mitigation is an important technological and fundamental challenge in...
A modified subcell approach was adopted to evaluate the current density distributions of proton exch...
ABSTRACT The present state-of-art Proton Exchange Membrane Fuel Cell (PEMFC) technology is based on ...
Fuel cells are electrochemical devices that convert the available chemical free energy directly into...
Practical PEM fuel cells based on perfluorinated ionomer membranes (eg Nafion), most probably will u...
CO-tolerant anode catalysts for reformate-type polymer electrolyte fuel cells are proposed and evalu...
We have investigated the possibility of developing high-performance, cost-effective and durable non-...
Electrodeposited and sprayed Pt anode catalysts were electrochemically characterised by CO stripping...
CO tolerance electrocatalyst of PtRu-HxMeO3/C is prepared by a composite support method, which overc...
Proton-exchange membrane fuel cell (PEMFC) is one of the strongest contenders as a power source for ...
Proton exchange membrane (PEM) fuel cells are efficient energy converters that convert chemical ener...
In this work, we present the design of an external reference electrode for high-temperature PEM fuel...
Commercialization of proton exchange membrane fuel cells (PEMFCs) requires less expensive catalysts ...
The electrocatalysis of CO tolerance of Pt/C, PtRu/C, PtFe/C, PtMo/C, and PtW/C at a PEM fuel cell a...
Biomass is a green energy source, which can be converted to hydrogen rich gas. If this gas is used a...
Carbon monoxide (CO) poisoning mitigation is an important technological and fundamental challenge in...
A modified subcell approach was adopted to evaluate the current density distributions of proton exch...
ABSTRACT The present state-of-art Proton Exchange Membrane Fuel Cell (PEMFC) technology is based on ...