In this work, the electrochemical performance of aerosol-assisted chemical vapour deposited vanadium pentoxide cathodes at 600 °C, is presented. The as-grown oxides indicate specific discharge capacity of 300 mA h g-1 with capacity retention of 92 % after 10000 scans, coulombic efficiency of 100 %, noble structural stability and high reversibility. The present study shows the possibility to grow large-area magnesium cathode material with extended cycle stability via utilization of an aqueous electrolyte under a corrosive environment. This enhanced performance may be a combination of electrode morphology and adherence, when compared to previous work employing electrode growth temperature at 500 °C
To the best of our knowledge, one or more authors of this paper were federal employees when contribu...
Multivalent cation rechargeable batteries are expected to perform well as high-capacity storage dev...
Since 1990s, rechargeable Li-ion batteries have been widely used in consumer electronics such as cel...
The growth of orthorhombic vanadium pentoxide nanostructures was accomplished using an aerosol-assis...
A modified, thermal atomic layer deposition process was employed for the pulsed chemical vapour depo...
Rechargeable batteries based on magnesium virtually provide high volumetric capacity, safety, and co...
Vanadium-oxide-based materials exist with various vanadium oxidation states having rich chemistry an...
The search for alternatives to lithium-ion battery (LIB) is mainly driven through some inherent disa...
Vanadium pentoxide has been investigated for multivalent ion battery technologies but the structural...
Vanadium pentoxide (V2O5) has received considerable attention as a lithium battery cathode because i...
Magnesium batteries have attracted great attention as an alternative to Li-ion batteries but still s...
V2O5 is of interest as a Mg intercalation electrode material for Mg batteries, both in its thermodyn...
α-V2O5 has been extensively explored as a Mg2+ intercalation host with potential as a battery cathod...
Hierarchical vanadium oxide nanoflowers (V10O24·nH2O) were synthesized via a simple, high throughput...
As portable electronics and electric vehicles become a more integral part of everyday life, recharge...
To the best of our knowledge, one or more authors of this paper were federal employees when contribu...
Multivalent cation rechargeable batteries are expected to perform well as high-capacity storage dev...
Since 1990s, rechargeable Li-ion batteries have been widely used in consumer electronics such as cel...
The growth of orthorhombic vanadium pentoxide nanostructures was accomplished using an aerosol-assis...
A modified, thermal atomic layer deposition process was employed for the pulsed chemical vapour depo...
Rechargeable batteries based on magnesium virtually provide high volumetric capacity, safety, and co...
Vanadium-oxide-based materials exist with various vanadium oxidation states having rich chemistry an...
The search for alternatives to lithium-ion battery (LIB) is mainly driven through some inherent disa...
Vanadium pentoxide has been investigated for multivalent ion battery technologies but the structural...
Vanadium pentoxide (V2O5) has received considerable attention as a lithium battery cathode because i...
Magnesium batteries have attracted great attention as an alternative to Li-ion batteries but still s...
V2O5 is of interest as a Mg intercalation electrode material for Mg batteries, both in its thermodyn...
α-V2O5 has been extensively explored as a Mg2+ intercalation host with potential as a battery cathod...
Hierarchical vanadium oxide nanoflowers (V10O24·nH2O) were synthesized via a simple, high throughput...
As portable electronics and electric vehicles become a more integral part of everyday life, recharge...
To the best of our knowledge, one or more authors of this paper were federal employees when contribu...
Multivalent cation rechargeable batteries are expected to perform well as high-capacity storage dev...
Since 1990s, rechargeable Li-ion batteries have been widely used in consumer electronics such as cel...