This study reports a multinuclei in situ (real-time) NMR spectroscopic characterization of the electrochemical reactions of a negative Cu3P electrode toward lithium. Taking advantage of the different nuclear spin characteristics, we have obtained real-time P-31 and Li-7 NMR data for a comprehensive understanding of the electrochemical mechanism during the discharge and charge processes of a lithium battery. The large NMR chemical shift span of P-31 facilitates the observation of the chemical evolutions of different lithiated and delithiated LixCu3-xP phases, whereas the quadrupolar line features in Li-7 enable identification of asymmetric Li sites. These combined NMR data offer an unambiguous identification of four distinct LixCu3-xP phases...
While lithium metal represents the ultimate high-energy-density battery anode material, its use is l...
To improve the lifetime of lithium-ion batteries, a detailed understanding of degradation mechanisms...
Lithium metal has the highest volumetric and gravimetric energy density of all negative electrode ma...
This study reports a multinuclei in situ (real-time) NMR spectroscopic characterization of the elect...
International audienceThis study reports a multinuclei in situ (real-time) NMR spectroscopic charact...
International audienceIn a quest for high capacity electrodes for lithium-ion secondary batteries, c...
Capacity retention in lithium metal batteries needs to be improved if they are to be commercially vi...
A fundamental understanding of electrochemical reaction pathways is critical to improving the perfor...
The development of rechargeable batteries with higher energy densities and longer lifetimes represen...
ABSTRACT: A multi-nuclear solid-state NMR approach is employed to investigate the lithium−air batter...
A multi-nuclear solid-state NMR approach is employed to investigate the lithium–air battery, to moni...
International audienceGraphite is used in the lithium-ion batteries as a negative electrode. We use ...
Lithium metal has received a renewed interest as a promising anode material for next-generation, hig...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
The properties of a lithium ion battery (LIB) are determined by the interplay of its components. In ...
While lithium metal represents the ultimate high-energy-density battery anode material, its use is l...
To improve the lifetime of lithium-ion batteries, a detailed understanding of degradation mechanisms...
Lithium metal has the highest volumetric and gravimetric energy density of all negative electrode ma...
This study reports a multinuclei in situ (real-time) NMR spectroscopic characterization of the elect...
International audienceThis study reports a multinuclei in situ (real-time) NMR spectroscopic charact...
International audienceIn a quest for high capacity electrodes for lithium-ion secondary batteries, c...
Capacity retention in lithium metal batteries needs to be improved if they are to be commercially vi...
A fundamental understanding of electrochemical reaction pathways is critical to improving the perfor...
The development of rechargeable batteries with higher energy densities and longer lifetimes represen...
ABSTRACT: A multi-nuclear solid-state NMR approach is employed to investigate the lithium−air batter...
A multi-nuclear solid-state NMR approach is employed to investigate the lithium–air battery, to moni...
International audienceGraphite is used in the lithium-ion batteries as a negative electrode. We use ...
Lithium metal has received a renewed interest as a promising anode material for next-generation, hig...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
The properties of a lithium ion battery (LIB) are determined by the interplay of its components. In ...
While lithium metal represents the ultimate high-energy-density battery anode material, its use is l...
To improve the lifetime of lithium-ion batteries, a detailed understanding of degradation mechanisms...
Lithium metal has the highest volumetric and gravimetric energy density of all negative electrode ma...