论文著作:
[1] X. J Hou, et al., Hollow opening nanoflowers MoS2-CuS-EG cathodes for high-performance hybrid Mg/Li-ion batteries, Chem. Eng. J, 409 (2021) 128271. IF=16.744, SCI 1区Top
[2]X. J Hou, et al., H2 generation kinetics/thermodynamics and hydrolysis mechanism of high-performance La-doped Mg-Ni alloys in NaCl solution - A large-scale and quick strategy to get hydrogen, J. Magnesium Alloys, 9 (2021) 1068-1083. IF=11.813, SCI 1区Top
[3]X. J Hou, et al., Hydrolysis hydrogen generation medium regulated by alkali metal cations for Mg-based alloy - Green seawater modification strategy, J. Power Sources, 509 (2021) 230364. IF=9.794, SCI 1区TOP
[4[X. J Hou, et al., Hydrogenation thermodynamics of melt-spun magnesium rich Mg-Ni nanocrystalline alloys with the addition of multiwalled carbon nanotubes and TiF3. J. Power Sources, 2016, 306, 437-447. IF= 9.794, SCI 1区Top
[5]X. J Hou, et al., Hydrolysis hydrogen production mechanism of Mg10Ni10Ce alloy surface modified by SnO2 nanotubes in different aqueous systems. Green Energy & Environment, 6 (2020) 124-137. IF=12.781, SCI 1区Top
[6]X. J Hou, et al., Microstructure evolution and controlled hydrolytic hydrogen generation strategy of Mg-rich Mg-Ni-La ternary alloys. Energy, 2019, 188, 116081. IF=8.857, SCI 1区Top
[7] K. M Hou,X. J Hou, et al., Carbon nanotubes and (Mg10Ni)85Ce15 synergistically activate Mg-Al alloy waste for efficiently hydrolysis hydrogen generation,Fuel,2022,324, 124829. IF=8.035, SCI 1区Top
[8]X. J Hou, et al., Mg alloy waste modified by (Mg10Ni) 90Ce10: A green hydrolysis hydrogen production strategy. Fuel, 2021,311, 122517. IF=8.035, SCI 1区Top