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Li3VO4: an insertion anode material for magnesium ion batteries with high  specific capacity - ScienceDirect
Li3VO4: an insertion anode material for magnesium ion batteries with high specific capacity - ScienceDirect

SEM images of Li3VO4-W (a), Li3VO4-E at low (b) and high (c)... | Download  Scientific Diagram
SEM images of Li3VO4-W (a), Li3VO4-E at low (b) and high (c)... | Download Scientific Diagram

Sub-micro droplet reactors for green synthesis of Li3VO4 anode materials in  lithium ion batteries | Nature Communications
Sub-micro droplet reactors for green synthesis of Li3VO4 anode materials in lithium ion batteries | Nature Communications

Figure 2 from Boosting the Deep Discharging/Charging Lithium Storage  Performances of Li3VO4 through Double-Carbon Decoration. | Semantic Scholar
Figure 2 from Boosting the Deep Discharging/Charging Lithium Storage Performances of Li3VO4 through Double-Carbon Decoration. | Semantic Scholar

Rational design of Li3VO4@carbon core–shell nanoparticles as Li-ion hybrid  supercapacitor anode materials - Journal of Materials Chemistry A (RSC  Publishing)
Rational design of Li3VO4@carbon core–shell nanoparticles as Li-ion hybrid supercapacitor anode materials - Journal of Materials Chemistry A (RSC Publishing)

Mesoporous Li3VO4/C Submicron‐Ellipsoids Supported on Reduced Graphene  Oxide as Practical Anode for High‐Power Lithium‐Ion Batteries - Li - 2015 -  Advanced Science - Wiley Online Library
Mesoporous Li3VO4/C Submicron‐Ellipsoids Supported on Reduced Graphene Oxide as Practical Anode for High‐Power Lithium‐Ion Batteries - Li - 2015 - Advanced Science - Wiley Online Library

A) XRD patterns of Li3VO4 and Li3VO4−δ. B) Crystal structure of... |  Download Scientific Diagram
A) XRD patterns of Li3VO4 and Li3VO4−δ. B) Crystal structure of... | Download Scientific Diagram

PDF] Boosting the Deep Discharging/Charging Lithium Storage Performances of  Li3VO4 through Double-Carbon Decoration. | Semantic Scholar
PDF] Boosting the Deep Discharging/Charging Lithium Storage Performances of Li3VO4 through Double-Carbon Decoration. | Semantic Scholar

Frontiers | Energy Storage and Thermostability of Li3VO4-Coated  LiNi0.8Co0.1Mn0.1O2 as Cathode Materials for Lithium Ion Batteries
Frontiers | Energy Storage and Thermostability of Li3VO4-Coated LiNi0.8Co0.1Mn0.1O2 as Cathode Materials for Lithium Ion Batteries

Carbon‐Coated Li3VO4 Spheres as Constituents of an Advanced Anode Material  for High‐Rate Long‐Life Lithium‐Ion Batteries - Shen - 2017 - Advanced  Materials - Wiley Online Library
Carbon‐Coated Li3VO4 Spheres as Constituents of an Advanced Anode Material for High‐Rate Long‐Life Lithium‐Ion Batteries - Shen - 2017 - Advanced Materials - Wiley Online Library

Morphology controlled lithium storage in Li3VO4 anodes - Journal of  Materials Chemistry A (RSC Publishing)
Morphology controlled lithium storage in Li3VO4 anodes - Journal of Materials Chemistry A (RSC Publishing)

Lithium Conductivity and Meyer-Neldel Rule in Li3PO4–Li3VO4–Li4GeO4 Lithium  Superionic Conductors | Chemistry of Materials
Lithium Conductivity and Meyer-Neldel Rule in Li3PO4–Li3VO4–Li4GeO4 Lithium Superionic Conductors | Chemistry of Materials

PDF] Boosting the Deep Discharging/Charging Lithium Storage Performances of  Li3VO4 through Double-Carbon Decoration. | Semantic Scholar
PDF] Boosting the Deep Discharging/Charging Lithium Storage Performances of Li3VO4 through Double-Carbon Decoration. | Semantic Scholar

a Crystal structure of Li3VO4 projected along a-axis. Color code: Li... |  Download Scientific Diagram
a Crystal structure of Li3VO4 projected along a-axis. Color code: Li... | Download Scientific Diagram

Hydrothermal microwave-assisted synthesis of Li3VO4 as an anode for  lithium-ion battery | SpringerLink
Hydrothermal microwave-assisted synthesis of Li3VO4 as an anode for lithium-ion battery | SpringerLink

High capacity and stability of Nb-doped Li3VO4 as an anode material for  lithium ion batteries - ScienceDirect
High capacity and stability of Nb-doped Li3VO4 as an anode material for lithium ion batteries - ScienceDirect

Effects of high surface energy on lithium-ion intercalation properties of  Ni-doped Li3VO4 | NPG Asia Materials
Effects of high surface energy on lithium-ion intercalation properties of Ni-doped Li3VO4 | NPG Asia Materials

Li3VO4: A Promising Insertion Anode Material for Lithium‐Ion Batteries - Li  - 2013 - Advanced Energy Materials - Wiley Online Library
Li3VO4: A Promising Insertion Anode Material for Lithium‐Ion Batteries - Li - 2013 - Advanced Energy Materials - Wiley Online Library

New understanding of Li3VO4/C as potential anode for Li-ion batteries:  Preparation, structure characterization and lithium insertion mechanism -  ScienceDirect
New understanding of Li3VO4/C as potential anode for Li-ion batteries: Preparation, structure characterization and lithium insertion mechanism - ScienceDirect

mp-19219: Li3VO4 (Orthorhombic, Pmn2_1, 31)
mp-19219: Li3VO4 (Orthorhombic, Pmn2_1, 31)

Rapid hydrothermal synthesis of Li3VO4 with different favored facets |  SpringerLink
Rapid hydrothermal synthesis of Li3VO4 with different favored facets | SpringerLink

Carbon-coated Li3VO4 with optimized structure as high capacity anode  material for lithium-ion capacitors
Carbon-coated Li3VO4 with optimized structure as high capacity anode material for lithium-ion capacitors