Employing high-rate ion-intercalation electrodes represents a feasible way to mitigate the inherent trade-off between energy density and power density for electrochemical energy storage devices, but efficient approaches to boost the charge-storage kinetics of electrodes are still needed. Here, we demonstrate a water-incorporation strategy to expand the interlayer gap of α-MoO3, in which water molecules take the place of lattice oxygen of α-MoO3. Accordingly, the modified α-MoO3 electrode exhibits theoretical-value-close specific capacity (963 C g−1 at 0.1 mV s−1), greatly improved rate capability (from 4.4% to 40.2% at 100 mV s−1) and boosted cycling stability (from 21 to 71% over 600 cycles). A fast-kinetics dual-ion-intercalation energy s...
In this dissertation, diverse strategic designs of energy storage materials were explored. The main ...
2D transition metal carbides and/or nitrides, so-called MXenes, are noted as ideal fast-charging cat...
© 2020, The Author(s). Highlights: MoSe2/MoC/C multiphase boundaries boost ionic transfer kinetics.M...
International audienceEmploying high-rate ion-intercalation electrodes represents a feasible way to ...
International audienceEmploying high-rate ion-intercalation electrodes represents a feasible way to ...
International audienceEmploying high-rate ion-intercalation electrodes represents a feasible way to ...
International audienceEmploying high-rate ion-intercalation electrodes represents a feasible way to ...
This work aimed at synthesizing MoO3 and MoO2 by a facile and cost-effective method using extract of...
To develop faradaic electrodes that integrate advantages of both battery (high capacity), and superc...
This thesis discusses a solar-chargeable intercalation battery derived on a single material MoO3 sem...
Intercalation chemistry has dominated electrochemical energy storage for decades, and storage capaci...
Molybdenum trioxide has served as a promising cathode material of rechargeable magnesium batteries (...
V2O5 is of interest as a Mg intercalation electrode material for Mg batteries, both in its thermodyn...
Rechargeable multivalent metal (e.g., Ca, Mg or, Al) batteries are ideal candidates for large-scale ...
Sustainable energy sources require an efficient energy storage system possessing excellent electroch...
In this dissertation, diverse strategic designs of energy storage materials were explored. The main ...
2D transition metal carbides and/or nitrides, so-called MXenes, are noted as ideal fast-charging cat...
© 2020, The Author(s). Highlights: MoSe2/MoC/C multiphase boundaries boost ionic transfer kinetics.M...
International audienceEmploying high-rate ion-intercalation electrodes represents a feasible way to ...
International audienceEmploying high-rate ion-intercalation electrodes represents a feasible way to ...
International audienceEmploying high-rate ion-intercalation electrodes represents a feasible way to ...
International audienceEmploying high-rate ion-intercalation electrodes represents a feasible way to ...
This work aimed at synthesizing MoO3 and MoO2 by a facile and cost-effective method using extract of...
To develop faradaic electrodes that integrate advantages of both battery (high capacity), and superc...
This thesis discusses a solar-chargeable intercalation battery derived on a single material MoO3 sem...
Intercalation chemistry has dominated electrochemical energy storage for decades, and storage capaci...
Molybdenum trioxide has served as a promising cathode material of rechargeable magnesium batteries (...
V2O5 is of interest as a Mg intercalation electrode material for Mg batteries, both in its thermodyn...
Rechargeable multivalent metal (e.g., Ca, Mg or, Al) batteries are ideal candidates for large-scale ...
Sustainable energy sources require an efficient energy storage system possessing excellent electroch...
In this dissertation, diverse strategic designs of energy storage materials were explored. The main ...
2D transition metal carbides and/or nitrides, so-called MXenes, are noted as ideal fast-charging cat...
© 2020, The Author(s). Highlights: MoSe2/MoC/C multiphase boundaries boost ionic transfer kinetics.M...