Intercalation of ions in electrode materials has been explored to improve the rate capability in lithium batteries and supercapacitors, due to the enhanced diffusion of Li+ or electrolyte cations. Here, we describe a synergistic effect between crystal structure and intercalated ion by experimental characterization and ab initio calculations, based on more than 20 nanomaterials: five typical cathode materials together with their alkali metal ion intercalation compounds A-M-O (A = Li, Na, K, Rb; M = V, Mo, Co, Mn, Fe-P). Our focus on nanowires is motivated by general enhancements afforded by nanoscale structures that better sustain lattice distortions associated with charge/discharge cycles. We show that preintercalation of alkali metal ions ...
We discuss here a unique flexible non-carbonaceous layered host, namely, metal titanium niobates (M-...
Li- and Na-ion batteries are effective energy storage technologies. Nonetheless, currently used orga...
The relatively large ionic radius of the Na ion is one of the primary reasons for the slow diffusion...
Layered intercalation compounds are the dominant cathode materials for rechargeable Li-ion batteries...
Layered intercalation compounds are the dominant cathode materials for rechargeable Li-ion batteries...
Beyond-lithium ion (BLI) alkali ion-based batteries are rising in interest among researchers because...
Metal ions pre-intercalated layered structure materials are considered as potential high performance...
Significant advances in the amount of electrical energy that can be stored in electrochemical cells,...
To understand the difference in reversible energy storage capacity between the O3-type layered Na an...
To evaluate the potential of Na-ion batteries, we contrast in this work the difference be-tween Na-i...
The electrochemical alkali ion exchange is a powerful technique to synthesize novel active materials...
The author of this work basing on her own investigations of AxMO2 cathode materials (A = Li, Na; M =...
The scarce inventory of compounds that allow for diffusion of multivalent cations at reasonable rate...
To evaluate the potential of Na-ion batteries, we contrast in this work the difference between Na-io...
We discuss here a unique flexible non-carbonaceous layered host, namely, metal titanium niobates (M-...
We discuss here a unique flexible non-carbonaceous layered host, namely, metal titanium niobates (M-...
Li- and Na-ion batteries are effective energy storage technologies. Nonetheless, currently used orga...
The relatively large ionic radius of the Na ion is one of the primary reasons for the slow diffusion...
Layered intercalation compounds are the dominant cathode materials for rechargeable Li-ion batteries...
Layered intercalation compounds are the dominant cathode materials for rechargeable Li-ion batteries...
Beyond-lithium ion (BLI) alkali ion-based batteries are rising in interest among researchers because...
Metal ions pre-intercalated layered structure materials are considered as potential high performance...
Significant advances in the amount of electrical energy that can be stored in electrochemical cells,...
To understand the difference in reversible energy storage capacity between the O3-type layered Na an...
To evaluate the potential of Na-ion batteries, we contrast in this work the difference be-tween Na-i...
The electrochemical alkali ion exchange is a powerful technique to synthesize novel active materials...
The author of this work basing on her own investigations of AxMO2 cathode materials (A = Li, Na; M =...
The scarce inventory of compounds that allow for diffusion of multivalent cations at reasonable rate...
To evaluate the potential of Na-ion batteries, we contrast in this work the difference between Na-io...
We discuss here a unique flexible non-carbonaceous layered host, namely, metal titanium niobates (M-...
We discuss here a unique flexible non-carbonaceous layered host, namely, metal titanium niobates (M-...
Li- and Na-ion batteries are effective energy storage technologies. Nonetheless, currently used orga...
The relatively large ionic radius of the Na ion is one of the primary reasons for the slow diffusion...