1 |
The effects of under-ribs convection on enhanced drainage parallel flow field for proton exchange membrane fuel cell Wu S, Yang W, Zhang J, Yan H, Kong X, Zuo X Inpress KJChE, 1000(1000), 1, 2022 |
2 |
양이온 교환막 수전해용 산화전극 확산층의 표면 특성 제어를 통한 전기화학적 성능 개선 연구 이한얼, Linh DT, 이우금, 김태근 Applied Chemistry for Engineering, 32(3), 332, 2021 |
3 |
Deactivation of Fe-N-C catalysts during catalyst ink preparation process Chon G, Suk M, Jaouen F, Chung MW, Choi CH Catalysis Today, 359, 9, 2021 |
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Effects of flow field on thermal management in proton exchange membrane fuel cell stacks: A numerical study Peng YM, Yan XH, Lin C, Shen SY, Yin JW, Zhang JL International Journal of Energy Research, 45(5), 7617, 2021 |
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An acid-doped ice membrane for selective proton transport Sleutels T, Kaniadakis I, Oladimeji O, van der Kooij H, ter Heijne A, Saakes M International Journal of Energy Research, 45(5), 8041, 2021 |
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The synergetic effect of air pollutants and metal ions on performance of a 5 kW proton-exchange membrane fuel cell stack Xie M, Zhang Q, Yang DJ, Chu TK, Li B, Ming PW, Zhang CM International Journal of Energy Research, 45(5), 7974, 2021 |
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Parameters determination of proton exchange membrane fuel cell stack electrical model by employing the hybrid water cycle moth-flame optimization algorithm Ben Messaoud R International Journal of Energy Research, 45(3), 4694, 2021 |
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A numerical study on convection and diffusion of mass transfer in proton exchange membrane fuel cells with orientated-type flow channels Chen H, Guo H, Ye F, Ma CF International Journal of Energy Research, 45(4), 5659, 2021 |
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Performance investigation of a multi-nozzle ejector for proton exchange membrane fuel cell system Han JQ, Feng JM, Hou TF, Peng XY International Journal of Energy Research, 45(2), 3031, 2021 |
10 |
Salt-recrystallizationpreparation of metal organic framework derived porous carbon support forhighly-efficientproton exchange membrane fuel cell Wu MJ, Xing YJ, Zeng LL, Guo W, Pan M International Journal of Energy Research, 45(2), 2334, 2021 |