LiCoO2 is the most common lithium storage material for lithium rechargeable batteries, used widely to power portable electronic devices such as laptop computers1, 2, 3. Operation of lithium rechargeable batteries is dependent on reversible lithium insertion and extraction processes into and from the host materials of lithium storage. Ordering of lithium and vacancies3, 4, 5, 6 has a profound effect on the physical properties of the host materials and the electrochemical performance of lithium batteries. However, probing lithium ions has been difficult when using traditional X-ray and neutron powder diffraction techniques due to lithium's relatively low scattering power when compared with those of oxygen and transition metals. In the work pr...
Layered lithium transition metal oxides (LTMO) are promising candidate cathode materials for next-ge...
X-ray and electron diffraction experiments were performed to understand lithium and vacancy ordering...
While LiCoO2: has been widely studied in the past 15 years as a promising positive electrode materia...
LiCoO2 is the most common lithium storage material for lithium rechargeable batteries, used widely t...
LiCoO{sub 2} is the most common lithium storage material used as positive electrode in lithium recha...
AbstractResearchers have used a One Angstrom transmission electron microscope to image lithium atoms...
Metal atoms can be routinely imaged in TEM specimens at resolutions from 2 Angstrom to 1.5 Angstrom,...
Ultra high-resolution is needed to resolve light elements in a heavy-atom matrix, such as Li+ in a t...
John Cowley and his group at ASU were pioneers in the use of transmission electron microscopy (TEM) ...
The key to advancing lithium-ion battery technology-in particular, fast charging-is the ability to f...
Capacity and voltage fading of layered structured cathode based on lithium transition-metal oxide is...
We have used for the first time soft X-ray transmission microscopy at the MISTRAL beamline to visua...
Direct observation of delithiated structures of LiCoO<sub>2</sub> at atomic scale has been achieved ...
Advances in high-resolution transmission electron microscopy and exit-surface wave (ESW) reconstruct...
Aberration-corrected high-angle annular dark-field scanning transmission electron microscopy (HAADF ...
Layered lithium transition metal oxides (LTMO) are promising candidate cathode materials for next-ge...
X-ray and electron diffraction experiments were performed to understand lithium and vacancy ordering...
While LiCoO2: has been widely studied in the past 15 years as a promising positive electrode materia...
LiCoO2 is the most common lithium storage material for lithium rechargeable batteries, used widely t...
LiCoO{sub 2} is the most common lithium storage material used as positive electrode in lithium recha...
AbstractResearchers have used a One Angstrom transmission electron microscope to image lithium atoms...
Metal atoms can be routinely imaged in TEM specimens at resolutions from 2 Angstrom to 1.5 Angstrom,...
Ultra high-resolution is needed to resolve light elements in a heavy-atom matrix, such as Li+ in a t...
John Cowley and his group at ASU were pioneers in the use of transmission electron microscopy (TEM) ...
The key to advancing lithium-ion battery technology-in particular, fast charging-is the ability to f...
Capacity and voltage fading of layered structured cathode based on lithium transition-metal oxide is...
We have used for the first time soft X-ray transmission microscopy at the MISTRAL beamline to visua...
Direct observation of delithiated structures of LiCoO<sub>2</sub> at atomic scale has been achieved ...
Advances in high-resolution transmission electron microscopy and exit-surface wave (ESW) reconstruct...
Aberration-corrected high-angle annular dark-field scanning transmission electron microscopy (HAADF ...
Layered lithium transition metal oxides (LTMO) are promising candidate cathode materials for next-ge...
X-ray and electron diffraction experiments were performed to understand lithium and vacancy ordering...
While LiCoO2: has been widely studied in the past 15 years as a promising positive electrode materia...