Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We have studied magnesium–scandium hydride with magic-angle-spinning 1H and 2H NMR. A new double-quantum NMR method with 45Sc recoupling reveals two types of deuterium with and without scandium neighbors. Their relative occurrence quantified with 2H–{45Sc} TRAPDOR NMR reflects a non-statistical Mg and Sc distribution over the crystal lattice. The deuteron exchange observed with two-dimensional NMR is consistent with Mg and Sc-rich sub-nanometer clusters. Deuterium motion is governed by a broad range of energy barriers without clear correlation to the underlying chemical heterogeneity
As the world is running out of fossil fuels, sustainable energy sources and efficient forms of energ...
Magnesium transition-metal alloys have a high hydrogen-storage capacity and show improved hydrogen-u...
Measurements of nuclear magnetic resonance (NMR) relaxation times allow the rates of H and D atomic ...
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...
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...
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...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
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 have a high hydrogen-storage capacity and show improved hydrogen-u...
Measurements of nuclear magnetic resonance (NMR) relaxation times allow the rates of H and D atomic ...
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...
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...
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...
Magnesium transition-metal alloys are a novel class of light-weight hydrogen-storage materials. We h...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
Using double-quantum 2H MAS NMR with 45Sc recoupling and Bloch–Siegert compensated 2H–{45Sc} TRAPDOR...
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 have a high hydrogen-storage capacity and show improved hydrogen-u...
Measurements of nuclear magnetic resonance (NMR) relaxation times allow the rates of H and D atomic ...