A major challenge in the development of new battery materials is understanding their fundamental mechanisms of operation and degradation. Their microscopically inhomogeneous nature calls for characterization tools that provide operando and localized information from individual grains and particles. Here, we describe an approach that enables imaging the nanoscale distribution of ions during electrochemical charging of a battery in a transmission electron microscope liquid flow cell. We use valence energy-loss spectroscopy to track both solvated and intercalated ions, with electronic structure fingerprints of the solvated ions identified using an ab initio nonlinear response theory. Equipped with the new electrochemical cell holder, nanoscale...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
The performance characteristics of Li-ion batteries are intrinsically linked to evolving nanoscale i...
The performance characteristics of Li-ion batteries are intrinsically linked to evolving nanoscale i...
The performance characteristics of Li-ion batteries are intrinsically linked to evolving nanoscale i...
An operando electrochemical stage for the transmission electron microscope has been configured to fo...
An operando electrochemical stage for the transmission electron microscope has been configured to fo...
Lithium dendrite formation is a major safety concern existing in Li-ion and Li-metal batteries. In s...
An operando electrochemical stage for the transmission electron microscope has been configured to fo...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
All-solid-state lithium-ion batteries (LIBs) are one of the promising candidates to overcome some is...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
The performance characteristics of Li-ion batteries are intrinsically linked to evolving nanoscale i...
The performance characteristics of Li-ion batteries are intrinsically linked to evolving nanoscale i...
The performance characteristics of Li-ion batteries are intrinsically linked to evolving nanoscale i...
An operando electrochemical stage for the transmission electron microscope has been configured to fo...
An operando electrochemical stage for the transmission electron microscope has been configured to fo...
Lithium dendrite formation is a major safety concern existing in Li-ion and Li-metal batteries. In s...
An operando electrochemical stage for the transmission electron microscope has been configured to fo...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
All-solid-state lithium-ion batteries (LIBs) are one of the promising candidates to overcome some is...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...
Development of novel electrolytes with increased electrochemical stability is critical for the next ...