Nanostructured magnesium titanium alloys are interesting lightweight materials for chemical hydrogen storage. We have therefore investigated the siting and dynamics of deuterium absorbed in a Mg0.65Ti0.35 alloy generated by magnetron cosputtering, and made a comparison to the corresponding features in bulk samples of deuterium-loaded Mg0.65Ti0.35 and Mg0.65Sc0.35 prepared by ball-milling and melt-casting, respectively. Magic-angle spinning 2H NMR of cosputtered Mg0.65Ti0.35D1.1 shows partly resolved signals of deuterium located in nonconductive domains at tetrahedral Mg4 and mixed MgnTi4−n sites (4 ppm) and deuterium at Ti4 sites in conducting TiD2 nanodomains (−29 and −68 ppm). No bulk TiD2 signal at −150 ppm is observed, in contrast to wh...
As the world is running out of fossil fuels, sustainable energy sources and efficient forms of energ...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Nanostructured magnesium titanium alloys are interesting lightweight materials for chemical hydrogen...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Electrochemical deuteration of metastable Mg-Ti alloys is studied. To investigate the dynamics of de...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
Electrochemical deuteration of metastable Mg-Ti alloys is studied. To investigate the dynamics of de...
Electrochemical deuteration of metastable Mg-Ti alloys is studied. To investigate the dynamics of de...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
As the world is running out of fossil fuels, sustainable energy sources and efficient forms of energ...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Nanostructured magnesium titanium alloys are interesting lightweight materials for chemical hydrogen...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Electrochemical deuteration of metastable Mg-Ti alloys is studied. To investigate the dynamics of de...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
Electrochemical deuteration of metastable Mg-Ti alloys is studied. To investigate the dynamics of de...
Electrochemical deuteration of metastable Mg-Ti alloys is studied. To investigate the dynamics of de...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
As the world is running out of fossil fuels, sustainable energy sources and efficient forms of energ...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...