Improved durability and reduced precious-metal loading are objectives of current polymer-electrolyte fuel-cell research. One path toward these objectives that shows promise is the use of ultrathin catalyst layers, which have thicknesses of less than 0.5 lm. In contrast, conventional platinum-on-carbon porous electrodes are generally between 10 and 20 lm thick. A disadvantage of ultrathin cathodes is their tendency to flood at low temperature, which could increase the time required to start the cell after an extended shutdown. In the present work, the cold-start performance of a polymer-electrolyte fuel cell with an ultrathin cathode is investigated by modifying a cold-start model (presented previously) such that the cathode is taken to be a...
In this study, a novel strategy is reported to improve the cold start performance of proton exchange...
The isothermal operation of single PEM fuel cells below 0 degrees C is investigated by potentiostati...
For passenger fuel cell vehicles (FCVs), customers will expect to start the vehicle and drive almost...
The cold-start model developed in Part I of this study is verified by comparing its predictions to a...
Polymer-electrolyte fuel cells (PEFCs) are electrochemical devices that create electricity by consum...
One challenge for the automotive application of polymer electrolyte fuel cells (PEMFC) is the start-...
The ability of polymer electrolyte fuel cells (PEFCs) to startup at subfreezing temperatures is gove...
This paper investigates the electrochemical kinetics, oxygen transport, and solid water formation in...
Understanding the cold start process of polymer electrolyte fuel cell (PEFC) is crucial to the devel...
In this work, we investigate the cold-start operation of polymer electrolyte fuel cells (PEFCs) thro...
The startup ability of a polymer electrolyte fuel cell System from subzero temperatures is essential...
have been proposed to replace Internal Combustion Engine (ICE) to provide a cleaner and more sustain...
Successful and rapid startup of proton exchange membrane fuel cells (PEMFCs) at subfreezing temperat...
In a polymer electrolyte fuel cell a catalyst layer is built typically of platinum nano-particles su...
In startups of polymer electrolyte fuel cells at temperatures close to 0 degrees C below freezing, w...
In this study, a novel strategy is reported to improve the cold start performance of proton exchange...
The isothermal operation of single PEM fuel cells below 0 degrees C is investigated by potentiostati...
For passenger fuel cell vehicles (FCVs), customers will expect to start the vehicle and drive almost...
The cold-start model developed in Part I of this study is verified by comparing its predictions to a...
Polymer-electrolyte fuel cells (PEFCs) are electrochemical devices that create electricity by consum...
One challenge for the automotive application of polymer electrolyte fuel cells (PEMFC) is the start-...
The ability of polymer electrolyte fuel cells (PEFCs) to startup at subfreezing temperatures is gove...
This paper investigates the electrochemical kinetics, oxygen transport, and solid water formation in...
Understanding the cold start process of polymer electrolyte fuel cell (PEFC) is crucial to the devel...
In this work, we investigate the cold-start operation of polymer electrolyte fuel cells (PEFCs) thro...
The startup ability of a polymer electrolyte fuel cell System from subzero temperatures is essential...
have been proposed to replace Internal Combustion Engine (ICE) to provide a cleaner and more sustain...
Successful and rapid startup of proton exchange membrane fuel cells (PEMFCs) at subfreezing temperat...
In a polymer electrolyte fuel cell a catalyst layer is built typically of platinum nano-particles su...
In startups of polymer electrolyte fuel cells at temperatures close to 0 degrees C below freezing, w...
In this study, a novel strategy is reported to improve the cold start performance of proton exchange...
The isothermal operation of single PEM fuel cells below 0 degrees C is investigated by potentiostati...
For passenger fuel cell vehicles (FCVs), customers will expect to start the vehicle and drive almost...