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Scanning electrochemical microscopy of Li-ion batteries - Physical  Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/C5CP02268A
Scanning electrochemical microscopy of Li-ion batteries - Physical Chemistry Chemical Physics (RSC Publishing) DOI:10.1039/C5CP02268A

Theory of SEI Formation in Rechargeable Batteries: Capacity Fade,  Accelerated Aging and Lifetime Prediction
Theory of SEI Formation in Rechargeable Batteries: Capacity Fade, Accelerated Aging and Lifetime Prediction

Microscopic Formation Mechanism of Solid Electrolyte Interphase Film in  Lithium-Ion Batteries with Highly Concentrated Electrolyte | The Journal of  Physical Chemistry C
Microscopic Formation Mechanism of Solid Electrolyte Interphase Film in Lithium-Ion Batteries with Highly Concentrated Electrolyte | The Journal of Physical Chemistry C

Generation and Evolution of the Solid Electrolyte Interphase of Lithium-Ion  Batteries - ScienceDirect
Generation and Evolution of the Solid Electrolyte Interphase of Lithium-Ion Batteries - ScienceDirect

Review on modeling of the anode solid electrolyte interphase (SEI) for  lithium-ion batteries | npj Computational Materials
Review on modeling of the anode solid electrolyte interphase (SEI) for lithium-ion batteries | npj Computational Materials

File:SEI layer formation on silicon.svg - Wikipedia
File:SEI layer formation on silicon.svg - Wikipedia

Solid electrolyte interface formation in lithium-ion batteries with ReaxFF  - Software for Chemistry & Materials Software for Chemistry & Materials
Solid electrolyte interface formation in lithium-ion batteries with ReaxFF - Software for Chemistry & Materials Software for Chemistry & Materials

Review on modeling of the anode solid electrolyte interphase (SEI) for  lithium-ion batteries | npj Computational Materials
Review on modeling of the anode solid electrolyte interphase (SEI) for lithium-ion batteries | npj Computational Materials

A granular look at solid electrolyte interfaces in lithium-ion batteries |  Communications Chemistry
A granular look at solid electrolyte interfaces in lithium-ion batteries | Communications Chemistry

Improving the cyclability performance of lithium-ion batteries by  introducing lithium difluorophosphate (LiPO 2 F 2 ) additive - RSC Advances  (RSC Publishing) DOI:10.1039/C7RA03926C
Improving the cyclability performance of lithium-ion batteries by introducing lithium difluorophosphate (LiPO 2 F 2 ) additive - RSC Advances (RSC Publishing) DOI:10.1039/C7RA03926C

Tuning Solid Electrolyte Interphase Layer Properties through the  Integration of Conversion Reaction | ACS Applied Materials & Interfaces
Tuning Solid Electrolyte Interphase Layer Properties through the Integration of Conversion Reaction | ACS Applied Materials & Interfaces

Simulating Li-ion battery ageing through solid electrolyte interphase  growth in graphite/NMC cells
Simulating Li-ion battery ageing through solid electrolyte interphase growth in graphite/NMC cells

Solid Electrolyte Interface (SEI) in Sodium Ion Batteries
Solid Electrolyte Interface (SEI) in Sodium Ion Batteries

Modeling the SEI layer formation and its growth in lithium-ion batteries  (LiB) during charge–discharge cycling | SpringerLink
Modeling the SEI layer formation and its growth in lithium-ion batteries (LiB) during charge–discharge cycling | SpringerLink

Schematic of SEI formation on the carbon negative electrode. As the... |  Download Scientific Diagram
Schematic of SEI formation on the carbon negative electrode. As the... | Download Scientific Diagram

Japanese team elucidates effect of additives on reaction mechanisms for SEI  formation in Li-ion batteries - Green Car Congress
Japanese team elucidates effect of additives on reaction mechanisms for SEI formation in Li-ion batteries - Green Car Congress

Influence of the Formation Current Density on the Transport Properties of  Galvanostatically Formed Model‐Type Solid Electrolyte Interphases - Kranz -  2019 - Batteries & Supercaps - Wiley Online Library
Influence of the Formation Current Density on the Transport Properties of Galvanostatically Formed Model‐Type Solid Electrolyte Interphases - Kranz - 2019 - Batteries & Supercaps - Wiley Online Library

Cathode-Electrolyte Interphase in Lithium Batteries Revealed by Cryogenic  Electron Microscopy - ScienceDirect
Cathode-Electrolyte Interphase in Lithium Batteries Revealed by Cryogenic Electron Microscopy - ScienceDirect

Schematic of 1D uniform SEI layer on a carbon negative electrode... |  Download Scientific Diagram
Schematic of 1D uniform SEI layer on a carbon negative electrode... | Download Scientific Diagram

Dendritic lithium and battery fires | Are we any closer?
Dendritic lithium and battery fires | Are we any closer?

In situ formation of a multicomponent inorganic-rich SEI layer provides a  fast charging and high specific energy Li-metal battery - Journal of  Materials Chemistry A (RSC Publishing)
In situ formation of a multicomponent inorganic-rich SEI layer provides a fast charging and high specific energy Li-metal battery - Journal of Materials Chemistry A (RSC Publishing)

In Situ/ex Situ Investigations on the Formation of the Mosaic Solid  Electrolyte Interface Layer on Graphite Anode for Lithium-Ion Batteries |  The Journal of Physical Chemistry C
In Situ/ex Situ Investigations on the Formation of the Mosaic Solid Electrolyte Interface Layer on Graphite Anode for Lithium-Ion Batteries | The Journal of Physical Chemistry C

A simplified schematic of SEI layer formation as a function of anode... |  Download Scientific Diagram
A simplified schematic of SEI layer formation as a function of anode... | Download Scientific Diagram

Batteries | Free Full-Text | SEI Growth Impacts of Lamination, Formation  and Cycling in Lithium Ion Batteries
Batteries | Free Full-Text | SEI Growth Impacts of Lamination, Formation and Cycling in Lithium Ion Batteries