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Three-Dimensional Printing of a LiFePO4/Graphite Battery Cell via Fused  Deposition Modeling | Scientific Reports
Three-Dimensional Printing of a LiFePO4/Graphite Battery Cell via Fused Deposition Modeling | Scientific Reports

Lithium batteries type: which chemistry should be used?
Lithium batteries type: which chemistry should be used?

Lithium Iron Phosphate | QuantumScape Solid-State Platform
Lithium Iron Phosphate | QuantumScape Solid-State Platform

Batteries | Free Full-Text | Recent Development in Carbon-LiFePO4 Cathodes  for Lithium-Ion Batteries: A Mini Review
Batteries | Free Full-Text | Recent Development in Carbon-LiFePO4 Cathodes for Lithium-Ion Batteries: A Mini Review

High-Performance Dual-Ion Battery Based on a Layered Tin Disulfide Anode |  ACS Omega
High-Performance Dual-Ion Battery Based on a Layered Tin Disulfide Anode | ACS Omega

Charge/discharge of an LFP/graphite full-cell with a lithiated GWRE at... |  Download Scientific Diagram
Charge/discharge of an LFP/graphite full-cell with a lithiated GWRE at... | Download Scientific Diagram

Cycling performance of LiFePO4/graphite batteries and their degradation  mechanism analysis via electrochemical and microscopic techniques |  SpringerLink
Cycling performance of LiFePO4/graphite batteries and their degradation mechanism analysis via electrochemical and microscopic techniques | SpringerLink

A Lithium-ion Battery Using Partially Lithiated Graphite Anode and  Amphi-redox LiMn2O4 Cathode | Scientific Reports
A Lithium-ion Battery Using Partially Lithiated Graphite Anode and Amphi-redox LiMn2O4 Cathode | Scientific Reports

Clean Technol. | Free Full-Text | Lithium-Ion Batteries—The Crux of  Electric Vehicles with Opportunities and Challenges
Clean Technol. | Free Full-Text | Lithium-Ion Batteries—The Crux of Electric Vehicles with Opportunities and Challenges

Enhancing cycle life and usable energy density of fast charging LiFePO4- graphite cell by regulating electrodes' lithium level - ScienceDirect
Enhancing cycle life and usable energy density of fast charging LiFePO4- graphite cell by regulating electrodes' lithium level - ScienceDirect

Effects of cycling on lithium-ion battery hysteresis and overvoltage |  Scientific Reports
Effects of cycling on lithium-ion battery hysteresis and overvoltage | Scientific Reports

Batteries | Free Full-Text | Localized High-Concentration Electrolyte  (LHCE) for Fast Charging Lithium-Ion Batteries
Batteries | Free Full-Text | Localized High-Concentration Electrolyte (LHCE) for Fast Charging Lithium-Ion Batteries

Cycling performance of the full graphite/LFP cells at a) 20 °C and b)... |  Download Scientific Diagram
Cycling performance of the full graphite/LFP cells at a) 20 °C and b)... | Download Scientific Diagram

Insights for understanding multiscale degradation of LiFePO4 cathodes -  ScienceDirect
Insights for understanding multiscale degradation of LiFePO4 cathodes - ScienceDirect

a) Charge/discharge voltage profiles of the LiFePO 4 ||graphite full... |  Download Scientific Diagram
a) Charge/discharge voltage profiles of the LiFePO 4 ||graphite full... | Download Scientific Diagram

Production of high-energy Li-ion batteries comprising silicon-containing  anodes and insertion-type cathodes | Nature Communications
Production of high-energy Li-ion batteries comprising silicon-containing anodes and insertion-type cathodes | Nature Communications

Cycling performance of LiFePO4/graphite batteries and their degradation  mechanism analysis via electrochemical and microscopic techniques |  SpringerLink
Cycling performance of LiFePO4/graphite batteries and their degradation mechanism analysis via electrochemical and microscopic techniques | SpringerLink

Energies | Free Full-Text | Temperature, Ageing and Thermal Management of  Lithium-Ion Batteries
Energies | Free Full-Text | Temperature, Ageing and Thermal Management of Lithium-Ion Batteries

Understanding the mechanism of capacity increase during early cycling of  commercial NMC/graphite lithium-ion batteries - ScienceDirect
Understanding the mechanism of capacity increase during early cycling of commercial NMC/graphite lithium-ion batteries - ScienceDirect

Overcharge Investigations of LiCoO2/Graphite Lithium Ion Batteries with  Different Electrolytes | ACS Applied Energy Materials
Overcharge Investigations of LiCoO2/Graphite Lithium Ion Batteries with Different Electrolytes | ACS Applied Energy Materials

Systematic Investigation of Electrochemical Performances for Lithium-Ion  Batteries with Si/Graphite Anodes: Effect of Electrolytes Based on  Fluoroethylene Carbonate and Linear Carbonates | ACS Applied Energy  Materials
Systematic Investigation of Electrochemical Performances for Lithium-Ion Batteries with Si/Graphite Anodes: Effect of Electrolytes Based on Fluoroethylene Carbonate and Linear Carbonates | ACS Applied Energy Materials

Review on Defects and Modification Methods of LiFePO4 Cathode Material for  Lithium-Ion Batteries | Energy & Fuels
Review on Defects and Modification Methods of LiFePO4 Cathode Material for Lithium-Ion Batteries | Energy & Fuels

Performance of LiFePO 4 /graphite batteries cycled in various SOC... |  Download Scientific Diagram
Performance of LiFePO 4 /graphite batteries cycled in various SOC... | Download Scientific Diagram

Aqueous Li-ion battery enabled by halogen conversion–intercalation  chemistry in graphite | Nature
Aqueous Li-ion battery enabled by halogen conversion–intercalation chemistry in graphite | Nature