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26. CO2 reactivity with Mg2NiH4 synthesized by in situ monitoring of mechanical milling.

27. Combined x-ray photoelectron spectroscopy and scanning electron microscopy studies of the LiBH4-MgH2 reactive hydride composite with and without a Ti-based additive.

28. Stress development in thin yttrium films on hard substrates during hydrogen loading.

29. A hydride composite featuring mutual destabilisation and reversible boron exchange: Ca(BH4)2–Mg2NiH4.

30. A novel catalytic route for hydrogenation–dehydrogenation of 2LiH + MgB2via in situ formed core–shell LixTiO2 nanoparticles.

31. Changing the dehydrogenation pathway of LiBH4–MgH2via nanosized lithiated TiO2.

32. Ca(BH4)2–Mg2NiH4: on the pathway to a Ca(BH4)2 system with a reversible hydrogen cycle.

33. A new potassium-based intermediate and its role in the desorption properties of the K–Mg–N–H system.

40. Catalyzed Na2LiAlH6 for hydrogen storage

41. Modeling the kinetic behavior of the Li-RHC system for energy-hydrogen storage: (I) absorption.

42. Magnesium based materials for hydrogen based energy storage: Past, present and future.

43. Complex hydrides for energy storage.

44. Waste Mg-Al based alloys for hydrogen storage.

45. Optimization and comprehensive characterization of metal hydride based hydrogen storage systems using in-situ Neutron Radiography.

46. Effect of Fe additive on the hydrogenation-dehydrogenation properties of 2LiH + MgB2/2LiBH4 + MgH2 system.

48. Hydrogen storage systems from waste Mg alloys.

49. Mechanochemical synthesis of NaBH4 starting from NaH–MgB2 reactive hydride composite system

50. Sorption and desorption properties of a CaH2/MgB2/CaF2 reactive hydride composite as potential hydrogen storage material

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