1.Metal hydride nanoparticles with ultrahigh structural stability and hydrogen storage activity derived from microencapsulated nanoconfinement. Advanced Materials, 2017, 29: 1700760 |
2.State of the art multi-strategy improvement of Mg-based hydrides for hydrogen storage. Journal of Alloys and Compounds, 2019, 782: 796-823. (Invited Review) |
3. Remarkable synergistic catalysis of Ni-doped ultrafine TiO2 on hydrogen Sorption kinetics of MgH2. ACS Applied Materials & Interfaces, 2018, 10(30): 24975-24980. |
4. Facile synthesis of carbon supported nano-Ni particles with superior catalytic effect on hydrogen storage kinetics of MgH2. ACS Applied Energy Materials, 2018, 1: 1158-1165. |
5. Superior hydrogenation properties in a Mg65Ce10Ni20Cu5 nanoglass processed by melt-spinning followed by high-pressure torsion. Scripta Materialia, 2018, 152: 137-140. |
6. Hydrogenation properties of five-component Mg60Ce10Ni20Cu5X5 (X = Co, Zn) metallic glasses. Intermetallics, 2019, 108: 94-99. |
7. Nickel-decorated graphene nanoplates for enhanced H2 sorption properties of magnesium hydride at moderate temperatures. Journal of Materials Chemistry A, 2016, 4(7): 2560-2570. |
8. Effect of multi-wall carbon nanotubes supported nano-nickel and TiF3 addition on hydrogen storage properties of magnesium hydride. Journal of Alloys and Compounds, 2016, 669: 8-18. |
9. Excellent catalytic effects of multi-walled carbon nanotube supported titania on hydrogen storage of a Mg-Ni alloy. Chemical Communications, 2015, 51(12): 2368-2371. |
10. Significantly improved electrochemical hydrogen storage properties of magnesium nickel hydride modified with nano-nickel. Journal of Power Sources, 2015, 280: 132-140. |
11. Remarkable hydrogen storage properties at low temperature of Mg-Ni composites prepared by hydriding combustion synthesis and mechanical milling. RSC Advances, 2015, 5(78): 63202-63208. |
12. Effect of multi-wall carbon nanotubes supported palladium addition on hydrogen storage properties of magnesium hydride. International Journal of Hydrogen Energy, 2014, 39(19): 10184-10194. |
13. Highly efficient bimetal synergetic catalysis by a multi-wall carbon nanotube supported palladium and nickel catalyst for the hydrogen storage of magnesium hydride. Chemical Communications, 2014, 50(50): 6641-6644. |
14. Synergistic hydrogen desorption of HCS MgH2 + LiAlH4 composite. Energy, 2013, 55: 933-938. |
15.Efficient catalysis by MgCl2 in hydrogen generation via hydrolysis of Mg-based hydride prepared by hydriding combustion synthesis. Chemical Communications, 2012, 48(44): 5509-5511. |