The possibilities offered by ex situ and in situ operando 7Li solid-state nuclear magnetic resonance (NMR) are explored for the Li2Ru1-ySnyO3 family (0 < y < 1), shown previously to display cationic and anionic redox activity when used as a positive electrode for Li ion batteries. Ex situ NMR spectroscopic studies indicate a nonrandom Sn/Ru substitution in the family. In the first charge, an increased metallicity at 4 V is deduced from the NMR spectra. Surprisingly, no striking difference is observed at 4.6 V compared to the pristine electrode, although the electronic structure is expected to be very different and the local cation environment to be distorted. For in situ operando measurements, we designed a new electrochemical cell that is...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
A fundamental understanding of electrochemical reaction pathways is critical to improving the perfor...
The development of novel electrolyte materials for lithium ion batteries has been the focus of much ...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
The possibilities offered by ex situ and in situ operando <sup>7</sup>Li solid-state nuclear magneti...
Enhancing the electrochemical performance of batteries, including the lifespan, energy, and power de...
International audienceRechargeable metal-O2 batteries have attracted much attention in recent years ...
Lithium ion (Li ion) battery technology has enabled a complete revolution in consumer electronics an...
International audienceNuclear Magnetic Resonance (NMR) is a powerful technique to probe the local en...
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...
International audienceBatteries for electrical storage are central to any future alternative energy ...
Li-ion batteries have revolutionised energy storage in portable electronics. 30 years later, batteri...
A multi-nuclear solid-state NMR approach is employed to investigate the lithium–air battery, to moni...
Li-excess lithium-ion battery cathode materials and the role that reversible anionic redox may play ...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
A fundamental understanding of electrochemical reaction pathways is critical to improving the perfor...
The development of novel electrolyte materials for lithium ion batteries has been the focus of much ...
This document is the Accepted Manuscript version of a Published Work that appeared in final form in ...
The possibilities offered by ex situ and in situ operando <sup>7</sup>Li solid-state nuclear magneti...
Enhancing the electrochemical performance of batteries, including the lifespan, energy, and power de...
International audienceRechargeable metal-O2 batteries have attracted much attention in recent years ...
Lithium ion (Li ion) battery technology has enabled a complete revolution in consumer electronics an...
International audienceNuclear Magnetic Resonance (NMR) is a powerful technique to probe the local en...
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...
International audienceBatteries for electrical storage are central to any future alternative energy ...
Li-ion batteries have revolutionised energy storage in portable electronics. 30 years later, batteri...
A multi-nuclear solid-state NMR approach is employed to investigate the lithium–air battery, to moni...
Li-excess lithium-ion battery cathode materials and the role that reversible anionic redox may play ...
Because of the high specific capacity and low redox potential, lithium metal constitutes a promising...
A fundamental understanding of electrochemical reaction pathways is critical to improving the perfor...
The development of novel electrolyte materials for lithium ion batteries has been the focus of much ...