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How to decarbonise and regionalise lithium production in Europe - The  European Files
How to decarbonise and regionalise lithium production in Europe - The European Files

Hydrogen‐Bonded Organic Framework to Upgrade Cycling Stability and Rate  Capability of Li‐CO2 Batteries - Cheng - Angewandte Chemie International  Edition - Wiley Online Library
Hydrogen‐Bonded Organic Framework to Upgrade Cycling Stability and Rate Capability of Li‐CO2 Batteries - Cheng - Angewandte Chemie International Edition - Wiley Online Library

Governing Role of Solvent on Discharge Activity in Lithium–CO2 Batteries |  The Journal of Physical Chemistry Letters
Governing Role of Solvent on Discharge Activity in Lithium–CO2 Batteries | The Journal of Physical Chemistry Letters

PDF) Early-Stage Recovery of Lithium from Tailored Thermal Conditioned  Black Mass Part I: Mobilizing Lithium via Supercritical CO2-Carbonation
PDF) Early-Stage Recovery of Lithium from Tailored Thermal Conditioned Black Mass Part I: Mobilizing Lithium via Supercritical CO2-Carbonation

Understanding Fluoroethylene Carbonate and Vinylene Carbonate Based  Electrolytes for Si Anodes in Lithium Ion Batteries with NMR Spectroscopy |  Journal of the American Chemical Society
Understanding Fluoroethylene Carbonate and Vinylene Carbonate Based Electrolytes for Si Anodes in Lithium Ion Batteries with NMR Spectroscopy | Journal of the American Chemical Society

Metals | Free Full-Text | Early-Stage Recovery of Lithium from Tailored  Thermal Conditioned Black Mass Part I: Mobilizing Lithium via Supercritical  CO2-Carbonation
Metals | Free Full-Text | Early-Stage Recovery of Lithium from Tailored Thermal Conditioned Black Mass Part I: Mobilizing Lithium via Supercritical CO2-Carbonation

Lithium–Oxygen Batteries and Related Systems: Potential, Status, and Future  | Chemical Reviews
Lithium–Oxygen Batteries and Related Systems: Potential, Status, and Future | Chemical Reviews

Lithium-CO2 Batteries; Understanding the Challenges and Prospects
Lithium-CO2 Batteries; Understanding the Challenges and Prospects

Recent Advances in Rechargeable Li–CO2 Batteries | Energy & Fuels
Recent Advances in Rechargeable Li–CO2 Batteries | Energy & Fuels

Catalysts for Li−CO2 Batteries: From Heterogeneous to Homogeneous - Hao -  2022 - ChemNanoMat - Wiley Online Library
Catalysts for Li−CO2 Batteries: From Heterogeneous to Homogeneous - Hao - 2022 - ChemNanoMat - Wiley Online Library

Formation of Surface Impurities on Lithium–Nickel–Manganese–Cobalt Oxides  in the Presence of CO2 and H2O | Journal of the American Chemical Society
Formation of Surface Impurities on Lithium–Nickel–Manganese–Cobalt Oxides in the Presence of CO2 and H2O | Journal of the American Chemical Society

Metals | Free Full-Text | Early-Stage Recovery of Lithium from Tailored  Thermal Conditioned Black Mass Part I: Mobilizing Lithium via Supercritical  CO2-Carbonation
Metals | Free Full-Text | Early-Stage Recovery of Lithium from Tailored Thermal Conditioned Black Mass Part I: Mobilizing Lithium via Supercritical CO2-Carbonation

RecycLiCo Battery Materials Highlights CO2 Emission Savings for Lithium  Production - RecycLiCo Battery Materials
RecycLiCo Battery Materials Highlights CO2 Emission Savings for Lithium Production - RecycLiCo Battery Materials

Carbon Footprint of Lithium-Ion Battery Production (vs Gasoline, Lead-Acid)
Carbon Footprint of Lithium-Ion Battery Production (vs Gasoline, Lead-Acid)

Tracing the origin of lithium in Li-ion batteries using lithium isotopes |  Nature Communications
Tracing the origin of lithium in Li-ion batteries using lithium isotopes | Nature Communications

Metals | Free Full-Text | Environmentally Friendly Recovery of Lithium from  Lithium–Sulfur Batteries
Metals | Free Full-Text | Environmentally Friendly Recovery of Lithium from Lithium–Sulfur Batteries

Recent Development of CO2 Electrochemistry from Li–CO2 Batteries to Zn–CO2  Batteries | Accounts of Chemical Research
Recent Development of CO2 Electrochemistry from Li–CO2 Batteries to Zn–CO2 Batteries | Accounts of Chemical Research

Energies | Free Full-Text | Recycling of Lithium Batteries—A Review
Energies | Free Full-Text | Recycling of Lithium Batteries—A Review

Metals | Free Full-Text | Early-Stage Recovery of Lithium from Tailored  Thermal Conditioned Black Mass Part I: Mobilizing Lithium via Supercritical  CO2-Carbonation
Metals | Free Full-Text | Early-Stage Recovery of Lithium from Tailored Thermal Conditioned Black Mass Part I: Mobilizing Lithium via Supercritical CO2-Carbonation

Anion-enrichment interface enables high-voltage anode-free lithium metal  batteries | Nature Communications
Anion-enrichment interface enables high-voltage anode-free lithium metal batteries | Nature Communications

Achilles' Heel of Lithium–Air Batteries: Lithium Carbonate - Zhao - 2018 -  Angewandte Chemie International Edition - Wiley Online Library
Achilles' Heel of Lithium–Air Batteries: Lithium Carbonate - Zhao - 2018 - Angewandte Chemie International Edition - Wiley Online Library

Li-CO2 Electrochemistry: A New Strategy for CO2 Fixation and Energy Storage  - ScienceDirect
Li-CO2 Electrochemistry: A New Strategy for CO2 Fixation and Energy Storage - ScienceDirect

How Can We Use Carbon Dioxide to Feed Rechargeable Batteries? - Kleinman  Center for Energy Policy
How Can We Use Carbon Dioxide to Feed Rechargeable Batteries? - Kleinman Center for Energy Policy

Recent advances and perspectives of metal/covalent-organic frameworks in  metal-air batteries - ScienceDirect
Recent advances and perspectives of metal/covalent-organic frameworks in metal-air batteries - ScienceDirect

The new 'gold rush' for green lithium - BBC Future
The new 'gold rush' for green lithium - BBC Future

Single-metal site-embedded conjugated macrocyclic hybrid catalysts enable  boosted CO2 reduction and evolution kinetics in Li-CO2 batteries -  ScienceDirect
Single-metal site-embedded conjugated macrocyclic hybrid catalysts enable boosted CO2 reduction and evolution kinetics in Li-CO2 batteries - ScienceDirect