Novel lithium-based materials for carbon capture and storage (CCS) applications have emerged as a promising class of materials for use in CO2 looping, where the material reacts reversibly with CO2 to form Li2CO3, among other phases depending on the parent phase. Much work has been done to try and understand the origin of the continued reactivity of the process even after a layer of Li2CO3 has covered the sorbent particles. In this work, we have studied the lithium and oxygen ion dynamics in Li2CO3 over the temperature range of 293-973 K in order to elucidate the link between dynamics and reactivity in this system. We have used a combination of powder X-ray diffraction, solid-state NMR spectroscopy, and theoretical calculations to chart the ...
Ex situ Nuclear Magnetic Resonance (NMR) measurements were carried out to study lithium ion dynamics...
© 2019 Author(s). Carbonate-based lithium-ion electrolytes are of great importance due to their clos...
In this work, a novel method was utilized for the gas-liquid reactive crystallization of Li2CO3 in a...
Novel lithium-based materials for carbon capture and storage (CCS) applications have emerged as a pr...
Novel lithium-based materials for carbon capture and storage (CCS) applications have emerged as a pr...
Among the many different processes proposed for large-scale carbon capture and storage (CCS), high-t...
Among the many different processes proposed for large-scale carbon capture and storage (CCS), high-t...
Among the many different processes proposed for large-scale carbon capture and storage (CCS), high-t...
7Li NMR spin–lattice relaxation, line-shape, and stimulated-echo analyses are performed to investiga...
A multi-nuclear solid-state NMR approach is employed to investigate the lithium–air battery, to moni...
Thermal treatments under a very wide range of oxygen pressures were used to probe the composition an...
While CO2 storage technologies via carbon mineralization have focused on the use of earth-abundant c...
Lithium carbide, Li2C2, is a fascinating material that combines strong covalent and weak ionic bondi...
Lithium ion (Li ion) battery technology has enabled a complete revolution in consumer electronics an...
ABSTRACT: A multi-nuclear solid-state NMR approach is employed to investigate the lithium−air batter...
Ex situ Nuclear Magnetic Resonance (NMR) measurements were carried out to study lithium ion dynamics...
© 2019 Author(s). Carbonate-based lithium-ion electrolytes are of great importance due to their clos...
In this work, a novel method was utilized for the gas-liquid reactive crystallization of Li2CO3 in a...
Novel lithium-based materials for carbon capture and storage (CCS) applications have emerged as a pr...
Novel lithium-based materials for carbon capture and storage (CCS) applications have emerged as a pr...
Among the many different processes proposed for large-scale carbon capture and storage (CCS), high-t...
Among the many different processes proposed for large-scale carbon capture and storage (CCS), high-t...
Among the many different processes proposed for large-scale carbon capture and storage (CCS), high-t...
7Li NMR spin–lattice relaxation, line-shape, and stimulated-echo analyses are performed to investiga...
A multi-nuclear solid-state NMR approach is employed to investigate the lithium–air battery, to moni...
Thermal treatments under a very wide range of oxygen pressures were used to probe the composition an...
While CO2 storage technologies via carbon mineralization have focused on the use of earth-abundant c...
Lithium carbide, Li2C2, is a fascinating material that combines strong covalent and weak ionic bondi...
Lithium ion (Li ion) battery technology has enabled a complete revolution in consumer electronics an...
ABSTRACT: A multi-nuclear solid-state NMR approach is employed to investigate the lithium−air batter...
Ex situ Nuclear Magnetic Resonance (NMR) measurements were carried out to study lithium ion dynamics...
© 2019 Author(s). Carbonate-based lithium-ion electrolytes are of great importance due to their clos...
In this work, a novel method was utilized for the gas-liquid reactive crystallization of Li2CO3 in a...