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The promoting effect of Fe on Ni/GDCfor the Solid OxideH(2)Oelectrolysis Neofytidis C, Ioannidou E, Kollia M, Neophytides SG, Niakolas DK International Journal of Energy Research, 44(13), 10982, 2020 |
2 |
Effect of iron substitution content on structure, thermal expansion behavior and electrochemical properties of La(0.5)Ba(0.5)Co(1-y)Fe(y)O(3-delta) Li XN, Jiang XN, Pang SL, Wang Q, Su ZX, Zhang QY International Journal of Hydrogen Energy, 36(21), 13850, 2011 |
3 |
Effect of P on crystallization behavior and soft-magnetic properties of Fe83.3Si4Cu0.7B12-xPx nanocrystalline soft-magnetic alloys Wang AD, Men H, Shen BL, Xie GQ, Makino A, Inoue A Thin Solid Films, 519(23), 8283, 2011 |
4 |
Influence of Fe content on the microstructure and hydrogen storage properties of Ti16Zr5Cr22V57-xFex (x=2-8) alloys Hang ZM, Xiao XZ, Yu KR, Li SQ, Chen CP, Chen LX International Journal of Hydrogen Energy, 35(15), 8143, 2010 |
5 |
Effects of rapid quenching on the electrochemical performances and microstructures of the Mm(NiMnSiAl)(4.3)Co0.6-xFex (x=0-0.6) electrode alloys Zhang YH, Wang GQ, Dong XP, Guo SH, Wang XL Journal of Power Sources, 137(2), 309, 2004 |
6 |
Attempts to produce uniform Fe(III) siting in Fe content SOD and LTA zeolites - An EPR and Mossbauer study Fejes P, Kiricsi I, Lazar K, Marsi I, Rockenbauer A, Korecz L Applied Catalysis A: General, 242(1), 63, 2003 |
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Attempts to produce uniform Fe(III) siting in various Fe-content ZSM-5 zeolites - Determination of framework/extra-framework ratio of Fe(III) in zeolites by EPR and Mossbauer spectroscopy Fejes P, Kiricsi I, Lazar K, Marsi I, Rockenbauer A, Korecz L, Nagy JB, Aiello R, Testa F Applied Catalysis A: General, 242(2), 247, 2003 |