Li-iodine chemistry is of interest for electrochemical energy storage because it has been shown to provide both high power and high energy density. However, Li-iodine batteries are typically formed using Li metal and elemental iodine, which presents safety and fabrication challenges (e.g., the high vapor pressure of iodine). These disadvantages could be circumvented by using LiI as a starting cathode. Here, we present fabrication of a reduced graphene oxide (rGO)/LiI composite cathode, enabling for the first time the use of LiI as the Li-ion battery cathode. LiI was coated on rGO by infiltration of an ethanolic solution of LiI into a compressed rGO aerogel followed by drying. The free-standing rGO/LiI electrodes show stable long-term cyclin...
Improvements in lithium (Li)-ion battery technology can be achieved by developing novel, high-perfor...
As important anodes in lithium-ion batteries, graphene is always faced with the aggregation problem ...
We report a facile method to prepare nanoarchitectured metal oxides/graphene hybrids as both positiv...
The application of lithium ion batteries in high power applications such as hybrid electric vehicles...
ABSTRACT: Reduced graphene oxide modified Li2FeSiO4/C (LFS/(C+rGO)) composite is successfully synthe...
In this paper, the preparation and chemical–physical characterization of a composite material made o...
Reduced graphene oxide (rGO) is used as a conductive additive for nanosilicon-based lithium battery ...
The rechargeable aprotic lithium-air (Li-O2) battery is a promising potential technology for next-ge...
Lithium–iodine (Li–I) batteries have attracted tremendous attention due to their high energy and pow...
High capacity electrodes based on a Si composite anode and a layered composite oxide cathode, Ni-ric...
Rechargeable Li-iodine batteries are attractive electrochemical energy storage systems because iodin...
Lithium iodide (LiI) as cathode for lithium-iodine (Li-I 2 ) batteries hold great promise compared t...
For the application to portable devices and storage of renewable energies, high-performance lithium-...
Lithium-sulfur batteriesare a potential game-changer in rechargeable lithium battery technol. In add...
A novel cathode material for lithium-ion batteries, carbon-coated Li3V2(PO4)(3) particles which anch...
Improvements in lithium (Li)-ion battery technology can be achieved by developing novel, high-perfor...
As important anodes in lithium-ion batteries, graphene is always faced with the aggregation problem ...
We report a facile method to prepare nanoarchitectured metal oxides/graphene hybrids as both positiv...
The application of lithium ion batteries in high power applications such as hybrid electric vehicles...
ABSTRACT: Reduced graphene oxide modified Li2FeSiO4/C (LFS/(C+rGO)) composite is successfully synthe...
In this paper, the preparation and chemical–physical characterization of a composite material made o...
Reduced graphene oxide (rGO) is used as a conductive additive for nanosilicon-based lithium battery ...
The rechargeable aprotic lithium-air (Li-O2) battery is a promising potential technology for next-ge...
Lithium–iodine (Li–I) batteries have attracted tremendous attention due to their high energy and pow...
High capacity electrodes based on a Si composite anode and a layered composite oxide cathode, Ni-ric...
Rechargeable Li-iodine batteries are attractive electrochemical energy storage systems because iodin...
Lithium iodide (LiI) as cathode for lithium-iodine (Li-I 2 ) batteries hold great promise compared t...
For the application to portable devices and storage of renewable energies, high-performance lithium-...
Lithium-sulfur batteriesare a potential game-changer in rechargeable lithium battery technol. In add...
A novel cathode material for lithium-ion batteries, carbon-coated Li3V2(PO4)(3) particles which anch...
Improvements in lithium (Li)-ion battery technology can be achieved by developing novel, high-perfor...
As important anodes in lithium-ion batteries, graphene is always faced with the aggregation problem ...
We report a facile method to prepare nanoarchitectured metal oxides/graphene hybrids as both positiv...