V. Masson-delmotte, P. Zhai, H. Pörtner, D. Roberts, J. Skea et al., Global Warming of 1.5°C. An IPCC Special Report on the impacts of global warming of 1.5°C above pre-industrial levels and related global greenhouse gas emission pathways, 2018.

A. Lièvre, Développement d'un système de gestion de batterie lithium-ion à destination de véhicules "mild hybrid" : détermination des indicateurs d'état (SoC, SoH et SoF), 2015.

J. R. O'dea, N. J. Economou, and S. K. Buratto, Surface Morphology of Nafion at Hydrated and Dehydrated Conditions, Macromolecules, vol.46, pp.2267-74, 2013.

J. T. Gostick, M. A. Ioannidis, M. W. Fowler, and M. D. Pritzker, On the role of the microporous layer in PEMFC operation, Electrochemistry Communications, vol.11, pp.576-585, 2009.

X. Li and I. Sabir, Review of bipolar plates in PEM fuel cells: Flow-field designs, International Journal of Hydrogen Energy, vol.30, pp.359-71, 2005.

A. Coralli, B. Sarruf, P. De-miranda, L. Osmieri, S. Specchia et al., Chapter 2 -Fuel Cells, pp.39-122, 2019.

D. Bhatia, M. Sabharwal, and C. Duelk, Analytical model of a membrane humidifier for polymer electrolyte membrane fuel cell systems, International Journal of Heat and Mass Transfer, vol.58, pp.702-719, 2013.

D. Chen and H. Peng, A Thermodynamic Model of Membrane Humidifiers for PEM Fuel Cell Humidification Control, Meas, Control, vol.127, pp.424-456, 2004.

Y. Chang, Y. Qin, Y. Yin, J. Zhang, and X. Li, Humidification strategy for polymer electrolyte membrane fuel cells -A review, Applied Energy, vol.230, pp.643-62, 2018.

H. Jiang, L. Xu, C. Fang, X. Zhao, Z. Hu et al., Experimental study on dual recirculation of polymer electrolyte membrane fuel cell, International Journal of Hydrogen Energy n.d

H. Junming, X. Liangfei, L. Jianqiu, M. Ouyang, C. Siliang et al., Water management in a self-humidifying PEM fuel cell system by exhaust gas recirculation, IEEE Conference and Expo Transportation Electrification Asia-Pacific, pp.1-6, 2014.

B. J. Kim and M. S. Kim, Studies on the cathode humidification by exhaust gas recirculation for PEM fuel cell, International Journal of Hydrogen Energy, vol.37, pp.4290-4299, 2012.

L. Xu, C. Fang, J. Hu, S. Cheng, L. Jianqiu et al., Self-humidification of a proton electrolyte membrane fuel cell system with cathodic exhaust gas recirculation, Journal of Electrochemical Energy Conversion and Storage, vol.15, 2017.

S. H. Hwang and M. S. Kim, An experimental study on the cathode humidification and evaporative cooling of polymer electrolyte membrane fuel cells using direct water injection method at high current densities, Applied Thermal Engineering, vol.99, pp.635-679, 2016.

E. J. Choi, S. H. Hwang, J. Park, and M. S. Kim, Parametric analysis of simultaneous humidification and cooling for PEMFCs using direct water injection method, International Journal of Hydrogen Energy, vol.42, pp.12531-12573, 2017.

F. Migliardini, A. Unich, and P. Corbo, Experimental comparison between external and internal humidification in proton exchange membrane fuel cells for road vehicles, International Journal of Hydrogen Energy, vol.40, pp.5916-5943, 2015.

, Heavy Duty Mobility Fuel Cell Technology. Hydrogenics n, 2019.

F. N. Büchi and S. Srinivasan, Operating Proton Exchange Membrane Fuel Cells Without External Humidification of the Reactant Gases Fundamental Aspects, J Electrochem Soc, vol.144, pp.2767-72, 1997.

S. Martin, P. L. Garcia-ybarra, and J. L. Castillo, Long-term operation of a proton exchange membrane fuel cell without external humidification, Applied Energy, vol.205, pp.1012-1032, 2017.

R. Eckl, W. Zehtner, C. Leu, and U. Wagner, Experimental analysis of water management in a self-humidifying polymer electrolyte fuel cell stack, Journal of Power Sources, vol.138, pp.137-181, 2004.

J. Zhang, Y. Tang, C. Song, X. Cheng, J. Zhang et al., PEM fuel cells operated at 0% relative humidity in the temperature range of 23-120°C, Electrochimica Acta, vol.52, pp.5095-101, 2007.

J. B. Siegel, D. A. Mckay, A. G. Stefanopoulou, D. S. Hussey, and D. L. Jacobson, Measurement of Liquid Water Accumulation in a PEMFC with Dead-Ended Anode, J Electrochem Soc, vol.155, pp.1168-78, 2008.

Q. Meyer, S. Ashton, S. Torija, C. Gurney, P. Boillat et al., Nitrogen Blanketing and Hydrogen Starvation in Dead-Ended-Anode Polymer Electrolyte Fuel Cells Revealed by Hydro-Electro-Thermal Analysis, Electrochimica Acta, vol.203, pp.198-205, 2016.

S. Asghari, A. Khorasani, M. R. Dashti, and I. , Investigation of self-humidified and dead-ended anode proton exchange membrane fuel cell performance using electrochemical impedance spectroscopy, International Journal of Hydrogen Energy, vol.41, pp.12347-57, 2016.

S. Abbou, J. Dillet, D. Spernjak, R. Mukundan, J. D. Fairweather et al., Time Evolution of Local Potentials during PEM Fuel Cell Operation with Dead-Ended Anode, ECS Trans, vol.58, pp.1631-1673, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01431050

S. Abbou, J. Dillet, G. Maranzana, S. Didierjean, and O. Lottin, Local potential evolutions during proton exchange membrane fuel cell operation with dead-ended anode -Part I: Impact of water diffusion and nitrogen crossover, Journal of Power Sources, vol.340, pp.337-383, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01687918

S. Abbou, J. Dillet, D. Spernjak, R. Mukundan, R. L. Borup et al., High Potential Excursions during PEM Fuel Cell Operation with Dead-Ended Anode, J Electrochem Soc, vol.162, pp.1212-1232, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01417589

D. Jiang, R. Zeng, S. Wang, L. Jiang, and J. R. Varcoe, Paradox phenomena of proton exchange membrane fuel cells operating under dead-end anode mode, Journal of Power Sources, vol.265, pp.45-54, 2014.

Y. Lee, B. Kim, and Y. Kim, An experimental study on water transport through the membrane of a PEFC operating in the dead-end mode, International Journal of Hydrogen Energy, vol.34, pp.7768-79, 2009.

K. Nikiforow, H. Karimäki, T. M. Keränen, and J. Ihonen, Optimization study of purge cycle in proton exchange membrane fuel cell system, Journal of Power Sources, vol.238, pp.336-380, 2013.

S. Toghyani, E. Baniasadi, and E. Afshari, Performance analysis and comparative study of an anodic recirculation system based on electrochemical pump in proton exchange membrane fuel cell, International Journal of Hydrogen Energy, vol.43, pp.19691-703, 2018.

H. Lee, H. Su, and Y. Chen, A gas management strategy for anode recirculation in a proton exchange membrane fuel cell, International Journal of Hydrogen Energy, vol.43, pp.3803-3811, 2018.

H. Jiang, L. Xu, C. Fang, X. Zhao, Z. Hu et al., Experimental study on dual recirculation of polymer electrolyte membrane fuel cell, International Journal of Hydrogen Energy, vol.42, pp.18551-18560, 2017.

F. Migliardini, C. Capasso, and P. Corbo, Optimization of hydrogen feeding procedure in PEM fuel cell systems for transportation, International Journal of Hydrogen Energy, vol.39, pp.21746-52, 2014.

M. Uno, T. Shimada, and K. Tanaka, Reactant recirculation system utilizing pressure swing for proton exchange membrane fuel cell, Journal of Power Sources, vol.196, pp.2558-66, 2011.

F. Migliardini, D. Palma, T. M. Gaele, M. F. Corbo, and P. , Hydrogen purge and reactant feeding strategies in self-humidified PEM fuel cell systems, International Journal of Hydrogen Energy, vol.42, pp.1758-65, 2017.

R. K. Ahluwalia and X. Wang, Buildup of nitrogen in direct hydrogen polymer-electrolyte fuel cell stacks, Journal of Power Sources, vol.171, pp.63-71, 2007.

K. D. Baik and M. S. Kim, Characterization of nitrogen gas crossover through the membrane in proton-exchange membrane fuel cells, International Journal of Hydrogen Energy, vol.36, pp.732-741, 2011.

S. S. Kocha, J. D. Yang, and J. S. Yi, Characterization of gas crossover and its implications in PEM fuel cells, AIChE Journal, vol.52, pp.1916-1941, 2006.

M. Steinberger, J. Geiling, R. Oechsner, and L. Frey, Anode recirculation and purge strategies for PEM fuel cell operation with diluted hydrogen feed gas, Applied Energy, vol.232, pp.572-82, 2018.

D. A. Brunner, S. Marcks, M. Bajpai, A. K. Prasad, and S. G. Advani, Design and characterization of an electronically controlled variable flow rate ejector for fuel cell applications, International Journal of Hydrogen Energy, vol.37, pp.4457-66, 2012.

M. Kim, W. Lee, and C. Kim, Development of the Variable Multi-ejector for a Minibus PEMFC System, ECS Trans, vol.5, pp.773-80, 2007.

F. Li, J. Du, L. Zhang, J. Li, G. Li et al., Experimental determination of the water vapor effect on subsonic ejector for proton exchange membrane fuel cell (PEMFC), International Journal of Hydrogen Energy, vol.42, pp.29966-70, 2017.

J. Poirot-crouvezier,

J. Poirot-crouvezier, D. Buzon, F. Micoud, and R. Vincent, Method for supplying a fuel cell with alternating supply and purge phases. EP3109934A1, 2016.

I. Han, J. Jeong, and H. K. Shin, PEM fuel-cell stack design for improved fuel utilization, International Journal of Hydrogen Energy, vol.38, pp.11996-2006, 2013.

C. Werner, L. Busemeyer, and J. Kallo, The impact of operating parameters and system architecture on the water management of a multifunctional PEMFC system, International Journal of Hydrogen Energy, vol.40, pp.11595-603, 2015.

Y. Wang, L. Yue, and S. Wang, New design of a cathode flow-field with a sub-channel to improve the polymer electrolyte membrane fuel cell performance, Journal of Power Sources, vol.344, pp.32-40, 2017.

F. Nandjou, Etude locale de la thermique dans les piles à combustibles pour application automobile. Corrélation à la durée de vie. thesis. Grenoble Alpes, 2015.
URL : https://hal.archives-ouvertes.fr/tel-01267255

M. Jouin, M. Bressel, S. Morando, R. Gouriveau, D. Hissel et al., Estimating the end-of-life of PEM fuel cells: Guidelines and metrics, Applied Energy, vol.177, pp.87-97, 2016.
URL : https://hal.archives-ouvertes.fr/hal-02380401

J. Kurtz and G. Saur, Fuel Cell Technology Status:Degradation, DOE 2017 Annual Merit Review, 2017.

P. Pei and H. Chen, Main factors affecting the lifetime of Proton Exchange Membrane fuel cells in vehicle applications: A review, Applied Energy, vol.125, pp.60-75, 2014.

P. Pei, Q. Chang, and T. Tang, A quick evaluating method for automotive fuel cell lifetime, International Journal of Hydrogen Energy, vol.33, pp.3829-3865, 2008.

I. A. Schneider, S. Dahlen, and . Von, Start-Stop Phenomena in Channel and Land Areas of a Polymer Electrolyte Fuel Cell, Electrochem Solid-State Lett, vol.14, pp.30-33, 2011.

Y. Qiu, H. Zhong, M. Wang, and H. Zhang, Effect of relative humidity cycles accompanied by intermittent start/stop switches on performance degradation of membrane electrode assembly components in proton exchange membrane fuel cells, Journal of Power Sources, vol.283, pp.171-80, 2015.

G. Maranzana, A. Lamibrac, J. Dillet, S. Abbou, S. Didierjean et al., Startup (and Shutdown) Model for Polymer Electrolyte Membrane Fuel Cells, J Electrochem Soc, vol.162, pp.694-706, 2015.
URL : https://hal.archives-ouvertes.fr/hal-01417570

J. Durst, A. Lamibrac, F. Charlot, J. Dillet, L. F. Castanheira et al., Degradation heterogeneities induced by repetitive start/stop events in proton exchange membrane fuel cell: Inlet vs. outlet and channel vs. land, Applied Catalysis B: Environmental, pp.416-442, 2013.
URL : https://hal.archives-ouvertes.fr/hal-01427471

E. Brightman and G. Hinds, In situ mapping of potential transients during start-up and shut-down of a polymer electrolyte membrane fuel cell, Journal of Power Sources, vol.267, pp.160-70, 2014.

G. Tsotridis, A. Pilenga, D. Marco, G. Malkow, T. et al., Joint Research Centre. EU harmonised test protocols for PEMFC MEA testing in single cell configuration for automotive applications. Luxembourg: Publications Office, 2015.

R. Fonseca, E. Bideaux, B. Jeanneret, and M. Gerard, Desbois-Renaudin M, 1 AS. Energy management strategy for hybrid fuel cell vehicle, 12th International Conference on Control, Automation and Systems (ICCAS), 2012.

N. Yousfi-steiner, M. Ph, D. Candusso, D. Hissel, A. Hernandez et al., A review on PEM voltage degradation associated with water management: Impacts, influent factors and characterization, Journal of Power Sources, vol.183, pp.260-74, 2008.

A. Iranzo, P. Boillat, J. Biesdorf, and A. Salva, Investigation of the liquid water distributions in a 50 cm2 PEM fuel cell: Effects of reactants relative humidity, current density, and cathode stoichiometry, Energy, vol.82, pp.914-935, 2015.

Q. Yan, H. Toghiani, and J. Wu, Investigation of water transport through membrane in a PEM fuel cell by water balance experiments, Journal of Power Sources, vol.158, pp.316-341, 2006.

K. C. Neyerlin, H. A. Gasteiger, C. K. Mittelsteadt, J. Jorne, and W. Gu, Effect of Relative Humidity on Oxygen Reduction Kinetics in a PEMFC, J Electrochem Soc, vol.152, pp.1073-80, 2005.

D. G. Sanchez, T. Ruiu, K. A. Friedrich, J. Sanchez-monreal, and M. Vera, Analysis of the Influence of Temperature and Gas Humidity on the Performance Stability of Polymer Electrolyte Membrane Fuel Cells, J Electrochem Soc, vol.163, pp.150-159, 2016.

D. G. Sanchez, T. Ruiu, I. Biswas, M. Schulze, S. Helmly et al., Local impact of humidification on degradation in polymer electrolyte fuel cells, Journal of Power Sources, vol.352, pp.42-55, 2017.

D. G. Sanchez and P. L. Garcia-ybarra, PEMFC operation failure under severe dehydration, International Journal of Hydrogen Energy, vol.37, pp.7279-88, 2012.

S. Gößling, M. Klages, J. Haußmann, P. Beckhaus, M. Messerschmidt et al., Analysis of liquid water formation in polymer electrolyte membrane (PEM) fuel cell flow fields with a dry cathode supply, Journal of Power Sources, vol.306, pp.658-65, 2016.

A. Pozio, R. F. Silva, D. Francesco, M. , and G. L. , Nafion degradation in PEFCs from end plate iron contamination, Electrochimica Acta, vol.48, pp.1543-1552, 2003.

F. Nandjou, J. Poirot-crouvezier, M. Chandesris, J. Blachot, C. Bonnaud et al., Impact of heat and water management on proton exchange membrane fuel cells degradation in automotive application, Journal of Power Sources, vol.326, pp.182-92, 2016.

J. Zhao, S. Shahgaldi, X. Li, Z. Liu, and . Simon, Experimental Observations of Microstructure Changes in the Catalyst Layers of Proton Exchange Membrane Fuel Cells under Wet-Dry Cycles, J Electrochem Soc, vol.165, pp.3337-3382, 2018.

T. F. Fuller, The Importance of Water Content (?) on Electroosmotic Drag and Degradation in PEMFCs, ECS Trans, vol.41, pp.79-86, 2011.

H. Lee, T. Kim, W. Sim, S. Kim, B. Ahn et al., Pinhole formation in PEMFC membrane after electrochemical degradation and wet/dry cycling test, Korean J Chem Eng, vol.28, pp.487-91, 2011.

P. A. García-salaberri, D. G. Sánchez, P. Boillat, M. Vera, and K. A. Friedrich, Hydration and dehydration cycles in polymer electrolyte fuel cells operated with wet anode and dry cathode feed: A neutron imaging and modeling study, Journal of Power Sources, vol.359, pp.634-55, 2017.

A. Jo, G. Gwak, M. Moazzam, J. Lee, and H. Ju, Analysis of water film formation and lowhumidity operation characteristics of a polymer electrolyte fuel cell (PEFC), International Journal of Hydrogen Energy n.d

M. Koz and S. G. Kandlikar, Oxygen transport resistance at gas diffusion layer -Air channel interface with film flow of water in a proton exchange membrane fuel cell, Journal of Power Sources, vol.302, pp.331-373, 2016.

M. Inaba, T. Kinumoto, M. Kiriake, R. Umebayashi, A. Tasaka et al., Gas crossover and membrane degradation in polymer electrolyte fuel cells, Electrochimica Acta, vol.51, pp.5746-53, 2006.

R. Borup, J. Meyers, B. Pivovar, Y. S. Kim, R. Mukundan et al., Scientific Aspects of Polymer Electrolyte Fuel Cell Durability and Degradation, Chemical Reviews, vol.107, pp.3904-51, 2007.

F. D. Coms, The Chemistry of Fuel Cell Membrane Chemical Degradation, ECS Trans, vol.16, pp.235-55, 2008.

H. Wang, L. Hui, X. , and Y. , PEM Fuel Cell Failure Mode Analysis, 2011.

A. Laconti, H. Liu, C. Mittelsteadt, and R. Mcdonald, Polymer Electrolyte Membrane Degradation Mechanisms in Fuel Cells -Findings Over the Past 30 Years and Comparison with Electrolyzers, ECS Trans, vol.1, pp.199-219, 2006.

C. Chen and T. F. Fuller, The effect of humidity on the degradation of Nafion® membrane, Polymer Degradation and Stability, vol.94, pp.1436-1483, 2009.

A. M. Dafalla and F. Jiang, Stresses and their impacts on proton exchange membrane fuel cells: A review, International Journal of Hydrogen Energy, vol.43, pp.2327-2375, 2018.

L. Guétaz, S. Escribano, and O. Sicardy, Study by electron microscopy of proton exchange membrane fuel cell membrane-electrode assembly degradation mechanisms: Influence of local conditions, Journal of Power Sources, vol.212, pp.169-78, 2012.

M. B. Sassin, Y. Garsany, B. D. Gould, and K. Swider-lyons, Impact of Compressive Stress on MEA Pore Structure and Its Consequence on PEMFC Performance, J Electrochem Soc, vol.163, pp.808-823, 2016.

S. Abbou, J. Dillet, G. Maranzana, S. Didierjean, and O. Lottin, Local potential evolutions during proton exchange membrane fuel cell operation with dead-ended anode -Part I: Impact of water diffusion and nitrogen crossover, Journal of Power Sources, vol.340, pp.337-383, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01687918

S. Abbou, J. Dillet, G. Maranzana, S. Didierjean, and O. Lottin, Local potential evolutions during proton exchange membrane fuel cell operation with dead-ended anode -Part II: Aging mitigation strategies based on water management and nitrogen crossover, Journal of Power Sources, vol.340, pp.419-446, 2017.
URL : https://hal.archives-ouvertes.fr/hal-01687920

L. Dubau, L. Castanheira, M. Chatenet, F. Maillard, J. Dillet et al., Carbon corrosion induced by membrane failure: The weak link of PEMFC longterm performance, International Journal of Hydrogen Energy, vol.39, pp.21902-21916, 2014.
URL : https://hal.archives-ouvertes.fr/hal-01418286

B. Chen, J. Wang, T. Yang, Y. Cai, C. Zhang et al., Carbon corrosion and performance degradation mechanism in a proton exchange membrane fuel cell with dead-ended anode and cathode, Energy, vol.106, pp.54-62, 2016.

G. Lee, H. Choi, and Y. Tak, In situ durability of various carbon supports against carbon corrosion during fuel starvation in a PEM fuel cell cathode, Nanotechnology, vol.30, p.85402, 2018.

Y. Wang, B. Fang, H. Li, X. T. Bi, and H. Wang, Progress in modified carbon support materials for Pt and Pt-alloy cathode catalysts in polymer electrolyte membrane fuel cells, Progress in Materials Science, vol.82, pp.445-98, 2016.

J. D. Fairweather, D. Spernjak, A. Z. Weber, D. Harvey, S. Wessel et al., Effects of Cathode Corrosion on Through-Plane Water Transport in Proton Exchange Membrane Fuel Cells, J Electrochem Soc, vol.160, pp.980-93, 2013.

M. Bodner, A. Schenk, D. Salaberger, M. Rami, C. Hochenauer et al., Air Starvation Induced Degradation in Polymer Electrolyte Fuel Cells, Fuel Cells, vol.17, pp.18-26, 2017.

L. Tang, B. Han, K. Persson, C. Friesen, T. He et al., Electrochemical Stability of Nanometer-Scale Pt Particles in Acidic Environments, J Am Chem Soc, vol.132, pp.596-600, 2010.

C. G. Chung, L. Kim, Y. W. Sung, J. Lee, and J. S. Chung, Degradation mechanism of electrocatalyst during long-term operation of PEMFC, International Journal of Hydrogen Energy, vol.34, pp.8974-81, 2009.

W. Bi and T. F. Fuller, Temperature Effects on PEM Fuel Cells Pt ? C Catalyst Degradation, J Electrochem Soc, vol.155, pp.215-236, 2008.

E. Padgett, V. Yarlagadda, M. E. Holtz, M. Ko, B. Levin et al., Mitigation of PEM Fuel Cell Catalyst Degradation with Porous Carbon Supports, J Electrochem Soc, vol.166, pp.198-207, 2019.

C. Takei, K. Kakinuma, K. Kawashima, K. Tashiro, M. Watanabe et al., Load cycle durability of a graphitized carbon black-supported platinum catalyst in polymer electrolyte fuel cell cathodes, Journal of Power Sources, vol.324, pp.729-766, 2016.

J. Pauchet, M. Prat, P. Schott, and S. P. Kuttanikkad, Performance loss of proton exchange membrane fuel cell due to hydrophobicity loss in gas diffusion layer: Analysis by multiscale approach combining pore network and performance modelling, International Journal of Hydrogen Energy, vol.37, pp.1628-1669, 2012.
URL : https://hal.archives-ouvertes.fr/hal-00925579

Y. Yang, X. Ning, H. Tang, L. Guo, and H. Liu, Effects of Potential on Corrosion Behavior of Uncoated SS316L Bipolar Plate in Simulated PEM Fuel Cell Cathode Environment, Fuel Cells, vol.14, pp.868-75, 2014.

Y. Yang, X. Ning, H. Tang, L. Guo, and H. Liu, Effects of passive films on corrosion resistance of uncoated SS316L bipolar plates for proton exchange membrane fuel cell application, Applied Surface Science, vol.320, pp.274-80, 2014.

A. Knoop, Apparatus for recirculation of a cathode gas in a fuel cell arrangement, method for shutting down such a fuel cell arrangement, pp.8691452-8691454, 2014.

T. Hild, T. Herbig, and B. Wnendt, Cathode humidification of a PEM fuel cell through exhaust gas recirculation into a positive displacement compressor. US7781084 B2, 2010.

S. G. Goebel, Fuel cell shutdown and startup using a cathode recycle loop, vol.2, 2009.

S. G. Goebel, Fuel cell shutdown and startup using a cathode recycle loop. US7691508 B2, 2010.

T. A. Greszler, G. M. Robb, J. P. Salvador, B. Lakshmanan, and H. Gasteiger, Shutdown strategy to avoid carbon corrosion due to slow hydrogen/air intrusion rates, pp.20140038073-1, 2014.

S. Cheng, J. Li, L. Xu, and M. Ouyang, Air supply system model with exhaust gas recirculation for improving the life of fuel cell, IEEE Conference and Expo Transportation Electrification Asia-Pacific, pp.1-6, 2014.

D. Jenssen, O. Berger, and U. Krewer, Improved PEM fuel cell system operation with cascaded stack and ejector-based recirculation, Applied Energy, vol.195, pp.324-357, 2017.

D. K. Kim, H. E. Min, I. M. Kong, M. K. Lee, C. H. Lee et al., Parametric study on interaction of blower and back pressure control valve for a 80-kW class PEM fuel cell vehicle, International Journal of Hydrogen Energy, vol.41, pp.17595-615, 2016.

T. Yang, P. Shi, and C. Du, Study on self-humidified PEMFC with reactant circulation, Electrochimica Acta, vol.51, pp.5618-5643, 2006.

X. Zhao, L. Xu, C. Fang, H. Jiang, J. Li et al., Study on voltage clamping and self-humidification effects of pem fuel cell system with dual recirculation based on orthogonal test method, International Journal of Hydrogen Energy, 2018.

E. Alizadeh, M. Khorshidian, S. Saadat, S. M. Rahgoshay, and M. Rahimi-esbo, The experimental analysis of a dead-end H2/O2 PEM fuel cell stack with cascade type design, International Journal of Hydrogen Energy, vol.42, pp.11662-72, 2017.

H. Xu, Y. Song, H. R. Kunz, and J. M. Fenton, Effect of Elevated Temperature and Reduced Relative Humidity on ORR Kinetics for PEM Fuel Cells, J Electrochem Soc, vol.152, pp.1828-1864, 2005.

B. Wahdame, D. Candusso, F. Harel, X. François, M. Péra et al., Analysis of a PEMFC durability test under low humidity conditions and stack behaviour modelling using experimental design techniques, Journal of Power Sources, vol.182, pp.429-469, 2008.
URL : https://hal.archives-ouvertes.fr/hal-00413859

J. Zhang, X. Yuan, C. Song, and H. Wang, Electrochemical Impedance Spectroscopy in PEM fuel cells, April, vol.23, 2018.

T. E. Springer, T. A. Zawodzinski, M. S. Wilson, and S. Gottesfeld, Characterization of Polymer Electrolyte Fuel Cells Using AC Impedance Spectroscopy, J Electrochem Soc, vol.143, pp.587-99, 1996.

G. Paganelli, Fuel Cell and Method for Stopping a Fuel Cell, 2012.

K. D. Baik and M. S. Kim, Characterization of nitrogen gas crossover through the membrane in proton-exchange membrane fuel cells, International Journal of Hydrogen Energy, vol.36, pp.732-741, 2011.

S. S. Kocha, J. D. Yang, and J. S. Yi, Characterization of gas crossover and its implications in PEM fuel cells, AIChE Journal, vol.52, pp.1916-1941, 2006.

A. Rabbani and M. Rokni, Effect of nitrogen crossover on purging strategy in PEM fuel cell systems, Applied Energy, vol.111, pp.1061-70, 2013.

B. Wang, K. Wu, F. Xi, J. Xuan, X. Xie et al., Numerical analysis of operating conditions effects on PEMFC with anode recirculation, Energy, vol.173, pp.844-56, 2019.

A. Rabbani and M. Rokni, Effect of nitrogen crossover on purging strategy in PEM fuel cell systems, Applied Energy, vol.111, pp.1061-70, 2013.

M. G. Eskin and S. Ye?ilyurt, Anode bleeding experiments to improve the performance and durability of proton exchange membrane fuel cells, International Journal of Hydrogen Energy, 2019.

J. Chen, J. B. Siegel, A. G. Stefanopoulou, and J. R. Waldecker, Optimization of purge cycle for dead-ended anode fuel cell operation, International Journal of Hydrogen Energy, vol.38, pp.5092-105, 2013.

S. Strahl, A. Husar, and J. Riera, Experimental study of hydrogen purge effects on performance and efficiency of an open-cathode Proton Exchange Membrane fuel cell system, Journal of Power Sources, vol.248, pp.474-82, 2014.

A. P. Sasmito, M. I. Ali, and T. Shamim, A Factorial Study to Investigate the Purging Effect on the Performance of a Dead-End Anode PEM Fuel Cell Stack, Fuel Cells, vol.15, pp.160-169, 2015.

A. G. Gomez, A. P. Sasmito, and T. Shamim, Investigation of the Purging Effect on the Performance of Dead-End Anode PEM Fuel Cell Vehicle: A Driving Cycle Test, ECS Trans, vol.58, pp.229-271, 2013.

M. Uno, T. Shimada, and K. Tanaka, Reactant recirculation system utilizing pressure swing for proton exchange membrane fuel cell, Journal of Power Sources, vol.196, pp.2558-66, 2011.

H. Lee, H. Su, and Y. Chen, A gas management strategy for anode recirculation in a proton exchange membrane fuel cell, International Journal of Hydrogen Energy, vol.43, pp.3803-3811, 2018.

Z. Wan, J. Liu, Z. Luo, Z. Tu, Z. Liu et al., Evaluation of self-water-removal in a deadended proton exchange membrane fuel cell, Applied Energy, vol.104, pp.751-758, 2013.

F. Nandjou, J. Poirot-crouvezier, M. Chandesris, and Y. Bultel, A pseudo-3D model to investigate heat and water transport in large area PEM fuel cells -Part 1: Model development and validation, International Journal of Hydrogen Energy, vol.41, pp.15545-61, 2016.

L. Dubau, J. Durst, F. Maillard, L. Guétaz, M. Chatenet et al., Further insights into the durability of Pt3Co/C electrocatalysts: Formation of "hollow" Pt nanoparticles induced by the Kirkendall effect, Electrochimica Acta, vol.56, pp.10658-67, 2011.

F. Maillard, S. Schreier, M. Hanzlik, E. R. Savinova, S. Weinkauf et al., Influence of particle agglomeration on the catalytic activity of carbon-supported Pt nanoparticles in CO monolayer oxidation, Phys Chem Chem Phys, vol.7, pp.385-93, 2005.
URL : https://hal.archives-ouvertes.fr/hal-00420694

J. Zhang, B. A. Litteer, W. Gu, H. Liu, and H. A. Gasteiger, Effect of Hydrogen and Oxygen Partial Pressure on Pt Precipitation within the Membrane of PEMFCs, J Electrochem Soc, vol.154, pp.1006-1017, 2007.

M. Chandesris, L. Guetaz, P. Schott, M. Scohy, and S. Escribano, Investigation of Degradation Heterogeneities in PEMFC Stack Aged under Reformate Coupling In Situ Diagnosis, Post-Mortem Ex Situ Analyses and Multi-Physic Simulations, J Electrochem Soc, vol.165, pp.3290-306, 2018.

L. Jabbour, C. Robin, F. Nandjou, R. Vincent, F. Micoud et al., Feasibility of in-plane GDL structuration: Impact on current density distribution in large-area Proton Exchange Membrane Fuel Cells, Journal of Power Sources, vol.299, pp.380-90, 2015.