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Phosphate Polyanion Materials as High-Voltage Lithium-Ion Battery Cathode:  A Review | Energy & Fuels
Phosphate Polyanion Materials as High-Voltage Lithium-Ion Battery Cathode: A Review | Energy & Fuels

IJERPH | Free Full-Text | A Future Perspective on Waste Management of  Lithium-Ion Batteries for Electric Vehicles in Lao PDR: Current Status and  Challenges
IJERPH | Free Full-Text | A Future Perspective on Waste Management of Lithium-Ion Batteries for Electric Vehicles in Lao PDR: Current Status and Challenges

Review of silicon-based alloys for lithium-ion battery anodes
Review of silicon-based alloys for lithium-ion battery anodes

Inorganics | Free Full-Text | Comparative Issues of Cathode Materials for Li -Ion Batteries
Inorganics | Free Full-Text | Comparative Issues of Cathode Materials for Li -Ion Batteries

Sodium-ion batteries: disrupt and conquer? | Wood Mackenzie
Sodium-ion batteries: disrupt and conquer? | Wood Mackenzie

Recycling of Lithium‐Ion Batteries—Current State of the Art, Circular  Economy, and Next Generation Recycling - Neumann - 2022 - Advanced Energy  Materials - Wiley Online Library
Recycling of Lithium‐Ion Batteries—Current State of the Art, Circular Economy, and Next Generation Recycling - Neumann - 2022 - Advanced Energy Materials - Wiley Online Library

A quantification method for Fe based particle contaminants in high purity  materials for lithium-ion batteries - ScienceDirect
A quantification method for Fe based particle contaminants in high purity materials for lithium-ion batteries - ScienceDirect

Two-Dimensional Infrared Spectroscopy and Molecular Dynamics Simulation  Studies of Nonaqueous Lithium Ion Battery Electrolytes | The Journal of  Physical Chemistry B
Two-Dimensional Infrared Spectroscopy and Molecular Dynamics Simulation Studies of Nonaqueous Lithium Ion Battery Electrolytes | The Journal of Physical Chemistry B

Characteristics of carbon from chitin-coated LiFePO4 and its performance for  lithium ion battery :: BioResources
Characteristics of carbon from chitin-coated LiFePO4 and its performance for lithium ion battery :: BioResources

Correlating ligand-to-metal charge transfer with voltage hysteresis in a Li-rich  rock-salt compound exhibiting anionic redox | Nature Chemistry
Correlating ligand-to-metal charge transfer with voltage hysteresis in a Li-rich rock-salt compound exhibiting anionic redox | Nature Chemistry

Batteries | Free Full-Text | Review of Achieved Purities after Li-ion  Batteries Hydrometallurgical Treatment and Impurities Effects on the  Cathode Performance
Batteries | Free Full-Text | Review of Achieved Purities after Li-ion Batteries Hydrometallurgical Treatment and Impurities Effects on the Cathode Performance

Energies | Free Full-Text | A Review of Lithium-Ion Battery Fire Suppression
Energies | Free Full-Text | A Review of Lithium-Ion Battery Fire Suppression

Electrolyte engineering via ether solvent fluorination for developing  stable non-aqueous lithium metal batteries | Nature Communications
Electrolyte engineering via ether solvent fluorination for developing stable non-aqueous lithium metal batteries | Nature Communications

A Perspective on the Sustainability of Cathode Materials used in Lithium‐Ion  Batteries - Murdock - 2021 - Advanced Energy Materials - Wiley Online  Library
A Perspective on the Sustainability of Cathode Materials used in Lithium‐Ion Batteries - Murdock - 2021 - Advanced Energy Materials - Wiley Online Library

Reuse, Recycle, and Regeneration of LiFePO4 Cathode from Spent Lithium-Ion  Batteries for Rechargeable Lithium- and Sodium-Ion Batteries | ACS  Sustainable Chemistry & Engineering
Reuse, Recycle, and Regeneration of LiFePO4 Cathode from Spent Lithium-Ion Batteries for Rechargeable Lithium- and Sodium-Ion Batteries | ACS Sustainable Chemistry & Engineering

PDF) Effect of Residual Trace Amounts of Fe and Al in Li[Ni1/3Mn1/3Co1/3]O2  Cathode Active Material for the Sustainable Recycling of Lithium-Ion  Batteries
PDF) Effect of Residual Trace Amounts of Fe and Al in Li[Ni1/3Mn1/3Co1/3]O2 Cathode Active Material for the Sustainable Recycling of Lithium-Ion Batteries

Molecules | Free Full-Text | Layered-Oxide Cathode Materials for  Fast-Charging Lithium-Ion Batteries: A Review
Molecules | Free Full-Text | Layered-Oxide Cathode Materials for Fast-Charging Lithium-Ion Batteries: A Review

Batteries | Free Full-Text | Olivine Positive Electrodes for Li-Ion  Batteries: Status and Perspectives
Batteries | Free Full-Text | Olivine Positive Electrodes for Li-Ion Batteries: Status and Perspectives

Processes | Free Full-Text | Lithium in a Sustainable Circular Economy: A  Comprehensive Review
Processes | Free Full-Text | Lithium in a Sustainable Circular Economy: A Comprehensive Review

Batch vs Continuous Manufacturing of Battery Electrode Slurry - Advancing  Materials
Batch vs Continuous Manufacturing of Battery Electrode Slurry - Advancing Materials

Electronics | Free Full-Text | A Comprehensive Review of Li-Ion Battery  Materials and Their Recycling Techniques
Electronics | Free Full-Text | A Comprehensive Review of Li-Ion Battery Materials and Their Recycling Techniques

lithium ion - Micromeritics
lithium ion - Micromeritics

Batteries | Free Full-Text | Ion Transport Regulated Lithium Metal  Batteries Achieved by Electrospun ZIF/PAN Composite Separator with Suitable  Electrolyte Wettability
Batteries | Free Full-Text | Ion Transport Regulated Lithium Metal Batteries Achieved by Electrospun ZIF/PAN Composite Separator with Suitable Electrolyte Wettability

Molecules | Free Full-Text | Recent Configurational Advances for  Solid-State Lithium Batteries Featuring Conversion-Type Cathodes
Molecules | Free Full-Text | Recent Configurational Advances for Solid-State Lithium Batteries Featuring Conversion-Type Cathodes

Metals | Free Full-Text | Circular Recycling Strategies for LFP Batteries:  A Review Focusing on Hydrometallurgy Sustainable Processing
Metals | Free Full-Text | Circular Recycling Strategies for LFP Batteries: A Review Focusing on Hydrometallurgy Sustainable Processing

Lithium Iron Phosphate vs. Lithium-Ion: Differences and Pros - Evergen
Lithium Iron Phosphate vs. Lithium-Ion: Differences and Pros - Evergen

Carbon in lithium-ion and post-lithium-ion batteries: Recent features -  ScienceDirect
Carbon in lithium-ion and post-lithium-ion batteries: Recent features - ScienceDirect