This paper presents the results of the modeling and analysis of the catalyst layer of a PEM fuel cell cathode. We nondimensionalized the governing equations and introduced three dimensionless parameters, pi(1), pi(K) and pi(D), to simplify the description of the complicated phenomena occurring in the catalyst layer. The three dimensionless parameters indicate the resistance to oxygen reduction, the resistance to proton conduction, and the resistance to oxygen diffusion, respectively. The profiles of oxygen concentration, reaction rate, and current density in the catalyst layer were investigated in terms Of pi(K) and pi(D). It was found that the dimensionless overpotential across the catalyst layer takes the form of (η) over cap (cat) = -ln pi(1)-f(pi(K), pi(D)). The functional relation of f(pi(K), pi(D)), which represents the mixture of ohmic overpotential and concentration overpotential, was then evaluated for various combinations Of pi(K) and pi(D), and finally two correlation equations for (η) over cap (cat) were proposed. The plot of f(pi(K), pi(D)) and the proposed correlation equations are helpful for analysis, prediction and optimization of the performance of a PENI fuel cell. (C) 2003 Elsevier B.V. All rights reserved.