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Molecular dynamics investigation of reduced ethylene carbonate aggregation  at the onset of solid electrolyte interphase formation - Physical Chemistry  Chemical Physics (RSC Publishing)
Molecular dynamics investigation of reduced ethylene carbonate aggregation at the onset of solid electrolyte interphase formation - Physical Chemistry Chemical Physics (RSC Publishing)

Comparative Study of Ethylene Carbonate-Based Electrolyte Decomposition at  Li, Ca, and Al Anode Interfaces | ACS Applied Energy Materials
Comparative Study of Ethylene Carbonate-Based Electrolyte Decomposition at Li, Ca, and Al Anode Interfaces | ACS Applied Energy Materials

Molecular structures of (a) ethylene carbonate (EC), (b) vinylene... |  Download Scientific Diagram
Molecular structures of (a) ethylene carbonate (EC), (b) vinylene... | Download Scientific Diagram

Molecules | Free Full-Text | The Role of Sub- and Supercritical CO2 as  “Processing Solvent” for the Recycling and Sample Preparation of Lithium  Ion Battery Electrolytes
Molecules | Free Full-Text | The Role of Sub- and Supercritical CO2 as “Processing Solvent” for the Recycling and Sample Preparation of Lithium Ion Battery Electrolytes

Lithium hexafluorophosphate solution in propylene carbonate, 1.0 M LiPF6 in  PC, battery grade | Sigma-Aldrich
Lithium hexafluorophosphate solution in propylene carbonate, 1.0 M LiPF6 in PC, battery grade | Sigma-Aldrich

A new approach to study combination mixture organic solvent ethylene  carbonate with lithium-ion for alkali-ion battery: A density functional  theory - ScienceDirect
A new approach to study combination mixture organic solvent ethylene carbonate with lithium-ion for alkali-ion battery: A density functional theory - ScienceDirect

A high-energy sulfur cathode in carbonate electrolyte by eliminating  polysulfides via solid-phase lithium-sulfur transformation | Nature  Communications
A high-energy sulfur cathode in carbonate electrolyte by eliminating polysulfides via solid-phase lithium-sulfur transformation | Nature Communications

Microscopic View of the Ethylene Carbonate Based Lithium-Ion Battery  Electrolyte by Small Angle X-ray Scattering - Joint Center for Energy  Storage Research
Microscopic View of the Ethylene Carbonate Based Lithium-Ion Battery Electrolyte by Small Angle X-ray Scattering - Joint Center for Energy Storage Research

Gas Evolution in Li-Ion Batteries: Modeling Ethylene Carbonate  Decomposition on LiCoO2 in the Presence of Surface Magnetism | The Journal  of Physical Chemistry C
Gas Evolution in Li-Ion Batteries: Modeling Ethylene Carbonate Decomposition on LiCoO2 in the Presence of Surface Magnetism | The Journal of Physical Chemistry C

4: Chemical structure of ethylene carbonate (EC), propylene carbonate... |  Download Scientific Diagram
4: Chemical structure of ethylene carbonate (EC), propylene carbonate... | Download Scientific Diagram

Lithium hexafluorophosphate solution in ethylene carbonate and diethyl  carbonate, 1.0 M LiPF6 in EC/DEC=50/50 (v/v), battery grade | Sigma-Aldrich
Lithium hexafluorophosphate solution in ethylene carbonate and diethyl carbonate, 1.0 M LiPF6 in EC/DEC=50/50 (v/v), battery grade | Sigma-Aldrich

Butyl acrylate (BA) and ethylene carbonate (EC) electrolyte additives for  low-temperature performance of lithium ion batteries - ScienceDirect
Butyl acrylate (BA) and ethylene carbonate (EC) electrolyte additives for low-temperature performance of lithium ion batteries - ScienceDirect

Mixing Electrolyte for Ion-Lithium Batteries - Jongia Mixing Technology
Mixing Electrolyte for Ion-Lithium Batteries - Jongia Mixing Technology

LOTTE Chemical | News
LOTTE Chemical | News

Ethylene carbonate-free electrolytes for Li-ion battery: Study of the solid  electrolyte interphases formed on graphite anodes - ScienceDirect
Ethylene carbonate-free electrolytes for Li-ion battery: Study of the solid electrolyte interphases formed on graphite anodes - ScienceDirect

Replacing conventional battery electrolyte additives with dioxolone  derivatives for high-energy-density lithium-ion batteries | Nature  Communications
Replacing conventional battery electrolyte additives with dioxolone derivatives for high-energy-density lithium-ion batteries | Nature Communications

Exploring the redox decomposition of ethylene carbonate–propylene carbonate  in Li-ion batteries - Materials Advances (RSC Publishing)  DOI:10.1039/D0MA00847H
Exploring the redox decomposition of ethylene carbonate–propylene carbonate in Li-ion batteries - Materials Advances (RSC Publishing) DOI:10.1039/D0MA00847H

A retrospective on lithium-ion batteries | Nature Communications
A retrospective on lithium-ion batteries | Nature Communications

Random copolymers of ethylene carbonate and ethylene oxide for Li-Ion  conductive solid electrolytes - ScienceDirect
Random copolymers of ethylene carbonate and ethylene oxide for Li-Ion conductive solid electrolytes - ScienceDirect

Exploring the redox decomposition of ethylene carbonate–propylene carbonate  in Li-ion batteries - Materials Advances (RSC Publishing)
Exploring the redox decomposition of ethylene carbonate–propylene carbonate in Li-ion batteries - Materials Advances (RSC Publishing)

NMR Study of the Degradation Products of Ethylene Carbonate in Silicon–Lithium  Ion Batteries | The Journal of Physical Chemistry Letters
NMR Study of the Degradation Products of Ethylene Carbonate in Silicon–Lithium Ion Batteries | The Journal of Physical Chemistry Letters

Deciphering the Ethylene Carbonate–Propylene Carbonate Mystery in Li-Ion  Batteries | Accounts of Chemical Research
Deciphering the Ethylene Carbonate–Propylene Carbonate Mystery in Li-Ion Batteries | Accounts of Chemical Research

Clarification of Decomposition Pathways in a State‐of‐the‐Art Lithium Ion  Battery Electrolyte through 13C‐Labeling of Electrolyte Components -  Henschel - 2020 - Angewandte Chemie International Edition - Wiley Online  Library
Clarification of Decomposition Pathways in a State‐of‐the‐Art Lithium Ion Battery Electrolyte through 13C‐Labeling of Electrolyte Components - Henschel - 2020 - Angewandte Chemie International Edition - Wiley Online Library

Exploring the redox decomposition of ethylene carbonate–propylene carbonate  in Li-ion batteries - Materials Advances (RSC Publishing)  DOI:10.1039/D0MA00847H
Exploring the redox decomposition of ethylene carbonate–propylene carbonate in Li-ion batteries - Materials Advances (RSC Publishing) DOI:10.1039/D0MA00847H

Structural formula of the electrolyte co-solvent ethylene carbonate... |  Download Scientific Diagram
Structural formula of the electrolyte co-solvent ethylene carbonate... | Download Scientific Diagram

Ethylene Carbonate‐Free Propylene Carbonate‐Based Electrolytes with  Excellent Electrochemical Compatibility for Li‐Ion Batteries through  Engineering Electrolyte Solvation Structure - Liu - 2021 - Advanced Energy  Materials - Wiley Online Library
Ethylene Carbonate‐Free Propylene Carbonate‐Based Electrolytes with Excellent Electrochemical Compatibility for Li‐Ion Batteries through Engineering Electrolyte Solvation Structure - Liu - 2021 - Advanced Energy Materials - Wiley Online Library