The high theoretical gravimetric capacity of the Li-S battery system makes it an attractive candidate for numerous energy storage applications. In practice, cell performance is plagued by low practical capacity and poor cycling. In an effort to explore the mechanism of the discharge with the goal of better understanding performance, we examine the Li-S phase diagram using computational techniques and complement this with an in situ Li-7 NMR study of the cell during discharge. Both the computational and experimental studies are consistent with the suggestion that the only solid product formed in the cell is Li2S, formed soon after cell discharge is initiated. In situ NMR spectroscopy also allows the direct observation of soluble Li+-species ...
A detailed understanding of the atomistic processes within a lithium ion battery is expected to faci...
The presence and role of polysulfide radicals in the electrochemical processes of lithium sulfur (Li...
Lithium metal has the highest volumetric and gravimetric energy density of all negative electrode ma...
The high theoretical gravimetric capacity of the Li–S battery system makes it an attractive candidat...
The high theoretical gravimetric capacity of the Li–S battery system makes it an attractive candidat...
A fundamental understanding of electrochemical reaction pathways is critical to improving the perfor...
To improve the lifetime of lithium-ion batteries, a detailed understanding of degradation mechanisms...
This dissertation focuses on identification of products and intermediates formed in the lithium-oxyg...
The lithium/sulfur battery is a promising electrochemical system that has a high theoretical capacit...
ABSTRACT: A multi-nuclear solid-state NMR approach is employed to investigate the lithium−air batter...
Li-S batteries, having one of highest theoretical energy densities possible, have been suggested as ...
Lithium-ion batteries (LIBs) containing silicon negative electrodes have been the subject of much re...
The properties of a lithium ion battery (LIB) are determined by the interplay of its components. In ...
The identification and quantification of species involved in the electrochemical reactions of lithiu...
Lithium–sulfur batteries discharge via the transformation of solid sulfur to solid lithium sulfide v...
A detailed understanding of the atomistic processes within a lithium ion battery is expected to faci...
The presence and role of polysulfide radicals in the electrochemical processes of lithium sulfur (Li...
Lithium metal has the highest volumetric and gravimetric energy density of all negative electrode ma...
The high theoretical gravimetric capacity of the Li–S battery system makes it an attractive candidat...
The high theoretical gravimetric capacity of the Li–S battery system makes it an attractive candidat...
A fundamental understanding of electrochemical reaction pathways is critical to improving the perfor...
To improve the lifetime of lithium-ion batteries, a detailed understanding of degradation mechanisms...
This dissertation focuses on identification of products and intermediates formed in the lithium-oxyg...
The lithium/sulfur battery is a promising electrochemical system that has a high theoretical capacit...
ABSTRACT: A multi-nuclear solid-state NMR approach is employed to investigate the lithium−air batter...
Li-S batteries, having one of highest theoretical energy densities possible, have been suggested as ...
Lithium-ion batteries (LIBs) containing silicon negative electrodes have been the subject of much re...
The properties of a lithium ion battery (LIB) are determined by the interplay of its components. In ...
The identification and quantification of species involved in the electrochemical reactions of lithiu...
Lithium–sulfur batteries discharge via the transformation of solid sulfur to solid lithium sulfide v...
A detailed understanding of the atomistic processes within a lithium ion battery is expected to faci...
The presence and role of polysulfide radicals in the electrochemical processes of lithium sulfur (Li...
Lithium metal has the highest volumetric and gravimetric energy density of all negative electrode ma...