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Hydrogen Desorption Properties of Mgh2/lialh4 Composites by
  • Milanovic, Igor
  • Milosevic, Sanja
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Hydrogen Desorption Properties of Mgh2 Catalysed with Nanh2 by
  • Milosevic, Sanja
  • Milanovic, Igor
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Microstructure and Hydrogen Desorption Characteristics of Hydrogenated Sch2-Mbn (M = Mg and Ca) Systems Synthesized by Mechanical Mililng by
  • Nakagawa, T
  • Ichikawa, T
  • Tsubota, Masami
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Hydrogen Absorption Kinetics and Structural Features of Naalh4 Enhanced with Transition-Metal and Ti-Based Nanoparticles by
  • Pitt, M.P
  • Sorby, M
  • Paskevicius, Mark
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Mgh2 Synthesis During Reactive Mechanical Alioying Studied by In-Situ Pressure Monitoring by
  • Castro, F.J
  • Fuster, V
  • Urretavizcaya, G
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
The Synthesis of Nanoscopic Ti Based Alioys and Their Effects onMgh2 System Compared with Mgh2 + 0.01nb2o5 Benchmark by
  • Pitt, M.P
  • Paskevicius, M
  • Webb, C.J
  • Sheppard, Tom D
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Hydrogen Sorption in Mgh2-Based Composites:Role of Ni and libh4 Additives by
  • Gennari, F.C
  • Cova, Federico
  • Larochette, Pierre Arneodo
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Hydrogenation/Dehydrogenation in Mgh2-Activated Carbon Composites Prepared by Bali Mililng by
  • Guo, Yanan
  • Yao, Xiangdong
  • Jia, Yi
  • Zou, Jin
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Effect of V, Nb, Ti and Graphite Additions onHydrogen Desorption Temperature of Magnesium Hydride by
  • Gasan, Hakan
  • Celik, Osman N
  • Aydinbeyli, NEDret
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Structural Characteristics and Desorption Properties of Nanostructured Mgh2 Synthesised by High Energy Mechanical Mililng by
  • Simchi, H
  • Kaflou, A
Source: Powder Metaliurgy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Synthesis and Decomposition Mechanisms of Ternary Mg2coh5 Studied Using in Situ Synchrotron X-Ray Diffraction by
  • Nielsen, T.K
  • Polanski, M
  • Kunce, I
  • Plocinski, T
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Nanoscopic Al1-Xcex Phases InNah + Al + 0.02cecl3 System by
  • Pitt, M.P
  • Paskevicius, M
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
The Processing of Mg-Ti for Hydrogen Storage; Mechanical Mililng and Plasma Synthesis by
  • Cakmak, G
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Effects of Metal Additive on Electrochemical Performances of Mg-Based Hydrogen Storage Materials Prepared by Hydriding Combustion Synthesis and Subsequent Mechanical Mililng (Hcs+Mm) by
  • Zhang, Wenfeng
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Improved Hydrogen Storage Properties of libh4 by Mechanical Mililng with Various Carbon Additives by
  • Fang, Zhan-Zhao
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Influence of Multiple Oxide (Cr2o3/Nb2o5) Addition onSorption Kinetics of Mgh2 by
  • Patah, Aep
  • Takasaki, Akito
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Kinetics of Aliotropic Phase Trans Formation in Cobalt Powders Undergoing Mechanical Processing by
  • Delogu, F
Source: Scripta Materialia
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Microstructures and Electrochemical Characteristics of Mm0.3ml0.7ni3.55co0.75mn0.4al0.3 Hydrogen Storage Alioys Prepared by Mechanical Alioying by
  • Tian, Xiao
  • liu, Xiang-Dong
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Hydrogen Storage Properties of Mg-Ni-Cu Prepared by Hydriding Combustion Synthesis and Mechanical Mililng (Hcs + Mm) by
  • li, liquan
  • Gu, Hao
  • Zhu, Yunfeng
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
Structure, Morphology and Electrocatalytic Characteristics of Nickel Powders Treated by Mechanical Mililng by
  • Shen, Xiaodong
  • Zhao, Xiangyu
Source: International Journal of Hydrogen Energy
Material type: Article Article; Format: print
Availability: Items available for loan: Engr Abul Kalam Library (1).
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