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It's Big and Long-Lived, and It Won't Catch Fire: The Vanadium Redox-⁠Flow  Battery - IEEE Spectrum
It's Big and Long-Lived, and It Won't Catch Fire: The Vanadium Redox-⁠Flow Battery - IEEE Spectrum

A first-principles study of potassium insertion in crystalline vanadium  oxide phases as possible potassium-ion battery cathode materials | MRS  Communications | Cambridge Core
A first-principles study of potassium insertion in crystalline vanadium oxide phases as possible potassium-ion battery cathode materials | MRS Communications | Cambridge Core

Vanadium Oxide/Lithium Batteries Offer Promise of High Power, Long Life -  CAFE Foundation Blog
Vanadium Oxide/Lithium Batteries Offer Promise of High Power, Long Life - CAFE Foundation Blog

New paper on Vanadium oxide anode published in Nature! – Liu Research Group
New paper on Vanadium oxide anode published in Nature! – Liu Research Group

Vanadium oxide nanowires for Li-ion batteries | Journal of Materials  Research | Cambridge Core
Vanadium oxide nanowires for Li-ion batteries | Journal of Materials Research | Cambridge Core

Using and recycling V2O5 as high performance anode materials for  sustainable lithium ion battery - ScienceDirect
Using and recycling V2O5 as high performance anode materials for sustainable lithium ion battery - ScienceDirect

Hydrogenated vanadium oxides as an advanced anode material in lithium ion  batteries | SpringerLink
Hydrogenated vanadium oxides as an advanced anode material in lithium ion batteries | SpringerLink

Frontiers | Mechanisms of Water-Stimulated Mg2+ Intercalation in Vanadium  Oxide: Toward the Development of Hydrated Vanadium Oxide Cathodes for Mg  Batteries
Frontiers | Mechanisms of Water-Stimulated Mg2+ Intercalation in Vanadium Oxide: Toward the Development of Hydrated Vanadium Oxide Cathodes for Mg Batteries

New Prelithiated V2O5 Superstructure for Lithium-Ion Batteries with Long  Cycle Life and High Power | ACS Energy Letters
New Prelithiated V2O5 Superstructure for Lithium-Ion Batteries with Long Cycle Life and High Power | ACS Energy Letters

Vanadium rechargeable lithium batteries (VL series) | Panasonic Industry  Europe GmbH
Vanadium rechargeable lithium batteries (VL series) | Panasonic Industry Europe GmbH

Hydrothermal vanadium manganese oxides: Anode and cathode materials for  lithium-ion batteries - ScienceDirect
Hydrothermal vanadium manganese oxides: Anode and cathode materials for lithium-ion batteries - ScienceDirect

Micro‐ and Nano‐Structured Vanadium Pentoxide (V2O5) for Electrodes of  Lithium‐Ion Batteries - Yue - 2017 - Advanced Energy Materials - Wiley  Online Library
Micro‐ and Nano‐Structured Vanadium Pentoxide (V2O5) for Electrodes of Lithium‐Ion Batteries - Yue - 2017 - Advanced Energy Materials - Wiley Online Library

Figure 3 from A Safe High-Performance All-Solid-State Lithium-Vanadium  Battery with a Freestanding V2O5 Nanowire Composite Paper Cathode. |  Semantic Scholar
Figure 3 from A Safe High-Performance All-Solid-State Lithium-Vanadium Battery with a Freestanding V2O5 Nanowire Composite Paper Cathode. | Semantic Scholar

Revitalized interest in vanadium pentoxide as cathode material for lithium-ion  batteries and beyond - ScienceDirect
Revitalized interest in vanadium pentoxide as cathode material for lithium-ion batteries and beyond - ScienceDirect

The study of lithium vanadium oxide LiV3O8 as an electrode material for  all-solid-state lithium-ion batteries with solid electrolyte  Li3.4Si0.4P0.6O4 - ScienceDirect
The study of lithium vanadium oxide LiV3O8 as an electrode material for all-solid-state lithium-ion batteries with solid electrolyte Li3.4Si0.4P0.6O4 - ScienceDirect

Electrochemical Zinc Intercalation in Lithium Vanadium Oxide: A  High-Capacity Zinc-Ion Battery Cathode | Chemistry of Materials
Electrochemical Zinc Intercalation in Lithium Vanadium Oxide: A High-Capacity Zinc-Ion Battery Cathode | Chemistry of Materials

Vanadium Anodes for Faster-charging, Longer-lived Batteries - IEEE Spectrum
Vanadium Anodes for Faster-charging, Longer-lived Batteries - IEEE Spectrum

Graphene-modified nanostructured vanadium pentoxide hybrids with  extraordinary electrochemical performance for Li-ion batteries | Nature  Communications
Graphene-modified nanostructured vanadium pentoxide hybrids with extraordinary electrochemical performance for Li-ion batteries | Nature Communications

Vanadium based carbide–oxide heterogeneous V2O5@V2C nanotube arrays for  high-rate and long-life lithium–sulfur batteries - Nanoscale (RSC  Publishing)
Vanadium based carbide–oxide heterogeneous V2O5@V2C nanotube arrays for high-rate and long-life lithium–sulfur batteries - Nanoscale (RSC Publishing)

Mesoporous lithium vanadium oxide as a thin film electrode for lithium-ion  batteries: comparison between direct synthesis of LiV2O5 and  electrochemical lithium intercalation in V2O5 | Semantic Scholar
Mesoporous lithium vanadium oxide as a thin film electrode for lithium-ion batteries: comparison between direct synthesis of LiV2O5 and electrochemical lithium intercalation in V2O5 | Semantic Scholar

Mesoporous lithium vanadium oxide as a thin film electrode for lithium-ion  batteries: comparison between direct synthesis of LiV2O5 and  electrochemical lithium intercalation in V2O5 - Journal of Materials  Chemistry A (RSC Publishing)
Mesoporous lithium vanadium oxide as a thin film electrode for lithium-ion batteries: comparison between direct synthesis of LiV2O5 and electrochemical lithium intercalation in V2O5 - Journal of Materials Chemistry A (RSC Publishing)

Discharge cell potential of lithium / silver vanadium oxide cell and... |  Download Scientific Diagram
Discharge cell potential of lithium / silver vanadium oxide cell and... | Download Scientific Diagram

Structural Evolution of Disordered LixV2O5 Bronzes in V2O5 Cathodes for Li-Ion  Batteries | Chemistry of Materials
Structural Evolution of Disordered LixV2O5 Bronzes in V2O5 Cathodes for Li-Ion Batteries | Chemistry of Materials

New Prelithiated V2O5 Superstructure for Lithium-Ion Batteries with Long  Cycle Life and High Power | ACS Energy Letters
New Prelithiated V2O5 Superstructure for Lithium-Ion Batteries with Long Cycle Life and High Power | ACS Energy Letters

Mesoporous Hybrids of Reduced Graphene Oxide and Vanadium Pentoxide for  Enhanced Performance in Lithium-Ion Batteries and Electrochemical  Capacitors. | Semantic Scholar
Mesoporous Hybrids of Reduced Graphene Oxide and Vanadium Pentoxide for Enhanced Performance in Lithium-Ion Batteries and Electrochemical Capacitors. | Semantic Scholar