Nanoscale surface engineering is playing important role in enhancing the performance of battery electrode. VO<sub>2</sub> is one of high-capacity but less-stable materials and has been used mostly in the form of powders for Li-ion battery cathode with mediocre performance. In this work, we design a new type of binder-free cathode by bottom-up growth of biface VO<sub>2</sub> arrays directly on a graphene network for both high-performance Li-ion and Na-ion battery cathodes. More importantly, graphene quantum dots (GQDs) are coated onto the VO<sub>2</sub> surfaces as a highly efficient surface “sensitizer” and protection to further boost the electrochemical properties. The integrated electrodes deliver a Na storage capacity of 306 mAh/g at 100...
Graphene has been extensively investigated as anode material for Li and Na ion batteries due to its ...
Research on VS4 is lagging due to the difficulty in its tailored synthesis. Herein, unique architect...
Graphene quantum dots prove useful in lithium‐ion batteries. This work introduces graphene quantum d...
Both nanoscale surface modification and structural control play significant roles in enhancing the e...
Research on deformable and wearable electronics has promoted an increasing demand for next-generatio...
Volumetric performance of a material is more attractive than gravimetric performance in consumer ele...
A hierarchically structured free-standing V2O5/vertically aligned carbon nanotube/graphene foam (V2O...
Recently, we have shown that the graphene-VO2(B) nanotube hybrid is a promising lithium ion battery ...
ABSTRACT: Although lithium ion batteries have gained commercial success owing to their high energy d...
Due to their high volumetric and gravimetric capacities, Li-ion batteries (LiBs) are currently consi...
Na<sub>0.33</sub>V<sub>2</sub>O<sub>5</sub> nanosheet-graphene hybrids were successfully fabricated ...
Herein, MoO2 quantum dots (QDs; 2 QD-bonded graphene sheets (MoO2-QDs@RGO) are facilely produced and...
Na3V2(PO4)(3) (NVP) has been in the spotlight as a potential candidate of next generation batteries ...
Employing solid ceramic electrolyte in sodium (Na) metal batteries enables safe and cost-effective e...
Development of three-dimensional ternary vanadate compounds with excellent structural stability on e...
Graphene has been extensively investigated as anode material for Li and Na ion batteries due to its ...
Research on VS4 is lagging due to the difficulty in its tailored synthesis. Herein, unique architect...
Graphene quantum dots prove useful in lithium‐ion batteries. This work introduces graphene quantum d...
Both nanoscale surface modification and structural control play significant roles in enhancing the e...
Research on deformable and wearable electronics has promoted an increasing demand for next-generatio...
Volumetric performance of a material is more attractive than gravimetric performance in consumer ele...
A hierarchically structured free-standing V2O5/vertically aligned carbon nanotube/graphene foam (V2O...
Recently, we have shown that the graphene-VO2(B) nanotube hybrid is a promising lithium ion battery ...
ABSTRACT: Although lithium ion batteries have gained commercial success owing to their high energy d...
Due to their high volumetric and gravimetric capacities, Li-ion batteries (LiBs) are currently consi...
Na<sub>0.33</sub>V<sub>2</sub>O<sub>5</sub> nanosheet-graphene hybrids were successfully fabricated ...
Herein, MoO2 quantum dots (QDs; 2 QD-bonded graphene sheets (MoO2-QDs@RGO) are facilely produced and...
Na3V2(PO4)(3) (NVP) has been in the spotlight as a potential candidate of next generation batteries ...
Employing solid ceramic electrolyte in sodium (Na) metal batteries enables safe and cost-effective e...
Development of three-dimensional ternary vanadate compounds with excellent structural stability on e...
Graphene has been extensively investigated as anode material for Li and Na ion batteries due to its ...
Research on VS4 is lagging due to the difficulty in its tailored synthesis. Herein, unique architect...
Graphene quantum dots prove useful in lithium‐ion batteries. This work introduces graphene quantum d...