dc.identifier.citation | 1. Li, J.Q.; Fang, C.; Xu, L.F. Current status and trends of the research and development for fuel cell vehicles.J. Automot. Saf. Energy 2014, 5, 17–29. 2. Sung, W.; Song, Y.; Yu, K.; Lim, T. Recent Advances in the Development of Hyundai_Kia’s Fuel Cell ElectricVehicles. SAE Int. J. Engines 2010, 3, 768–772. 3. Wang, C.;Wang, S.B.; Zhang, J.B.; Li, J.Q.;Wang, J.L.; Ouyang, M.G. The Durability Research on the ProtonExchange Membrane Fuel Cell for Automobile Application. Prog. Chem. 2015, 27, 424–435. 4. Cheng Wang et al, Recent Progress on the Key Materials and Components for Proton Exchange Membrane Fuel Cells in Vehicle Applications, Energies 2016, 9, 603; doi:10.3390/en9080603 5.Litster et al, PEM fuel cell elctrods, J of power sources, 2003 6. Oliver T. Holton et al, The Role of Platinum in Proton Exchange Membrane Fuel Cells, Platinum Metals Rev., 2013, 57, (4), 259–271 7. Huang, K.; Sasaki, K.; Adzic, R.R.; Xing, Y. Increasing Pt oxygen reduction reaction activity and durability with a carbon-doped TiO2 nanocoating catalyst support. J. Mater. Chem. 2012, 22, 16824–16832. 8. Li, G.; Xie, J.; Cai, H.; Qiao, J. New highly proton-conducting membrane based on sulfonated poly (aryleneether sulfone)s containing fluorophenyl pendant groups, for low-temperature polymer electrolyte membrane fuel cells. Int. J. Hydrog. Energy 2014, 39, 2639–2648. 9. Ticianelli, E.A. Methods to advance technology of proton exchange membrane fuel cellselectrochemicalscience and technology. J. Electrochem. Soc. 1988, 135, 2209–2214 10. Middleman et al, Improved PEMFC by contoled self assembly, Fuel Cell buletin, 2002 11. Sinha, P.K.; Gu, W.; Kongkanand, A.; Thompson, E. Performance of nano structured thin film (NSTF) electrodes under partially-humidified conditions fuel cells and energy conversion. J. \Electrochem. Soc. 2011, 158, B831–B840 | id_ID |