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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

Stable and conductive carbon networks enabling high-performance silicon  anodes for lithium-ion batteries - ScienceDirect
Stable and conductive carbon networks enabling high-performance silicon anodes for lithium-ion batteries - ScienceDirect

Design-Considerations regarding Silicon/Graphite and Tin/Graphite Composite  Electrodes for Lithium-Ion Batteries | Scientific Reports
Design-Considerations regarding Silicon/Graphite and Tin/Graphite Composite Electrodes for Lithium-Ion Batteries | Scientific Reports

Fast-charging high-energy lithium-ion batteries via implantation of  amorphous silicon nanolayer in edge-plane activated graphite anodes |  Nature Communications
Fast-charging high-energy lithium-ion batteries via implantation of amorphous silicon nanolayer in edge-plane activated graphite anodes | Nature Communications

The success story of graphite as a lithium-ion anode material –  fundamentals, remaining challenges, and recent developments including  silicon (oxide) ... - Sustainable Energy & Fuels (RSC Publishing)  DOI:10.1039/D0SE00175A
The success story of graphite as a lithium-ion anode material – fundamentals, remaining challenges, and recent developments including silicon (oxide) ... - Sustainable Energy & Fuels (RSC Publishing) DOI:10.1039/D0SE00175A

Separation and recovery of carbon powder in anodes from spent lithium-ion  batteries to synthesize graphene | Scientific Reports
Separation and recovery of carbon powder in anodes from spent lithium-ion batteries to synthesize graphene | Scientific Reports

Considering Critical Factors of Silicon/Graphite Anode Materials for  Practical High-Energy Lithium-Ion Battery Applications | Energy & Fuels
Considering Critical Factors of Silicon/Graphite Anode Materials for Practical High-Energy Lithium-Ion Battery Applications | Energy & Fuels

Nano/Microstructured Silicon–Graphite Composite Anode for  High-Energy-Density Li-Ion Battery | ACS Nano
Nano/Microstructured Silicon–Graphite Composite Anode for High-Energy-Density Li-Ion Battery | ACS Nano

Materials for lithium-ion battery safety | Science Advances
Materials for lithium-ion battery safety | Science Advances

Graphite as anode materials: Fundamental mechanism, recent progress and  advances - ScienceDirect
Graphite as anode materials: Fundamental mechanism, recent progress and advances - ScienceDirect

Porous nitrogen–doped carbon-coated nano-silicon/graphite ternary  composites as high-rate stability anode for Li-ion batteries | SpringerLink
Porous nitrogen–doped carbon-coated nano-silicon/graphite ternary composites as high-rate stability anode for Li-ion batteries | SpringerLink

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

Silicon Crystal Graphite Battery - YouTube
Silicon Crystal Graphite Battery - YouTube

Molecules | Free Full-Text | Recent Progress in Silicon−Based  Materials for Performance−Enhanced Lithium−Ion Batteries
Molecules | Free Full-Text | Recent Progress in Silicon−Based Materials for Performance−Enhanced Lithium−Ion Batteries

WORLD'S FIRST - SELF POWERED Q Beta Prototype with Silicon Crystal Graphite  Powercells - YouTube
WORLD'S FIRST - SELF POWERED Q Beta Prototype with Silicon Crystal Graphite Powercells - YouTube

Spray-Printed and Self-Assembled Honeycomb Electrodes of Silicon-Decorated  Carbon Nanofibers for Li-Ion Batteries | ACS Applied Materials & Interfaces
Spray-Printed and Self-Assembled Honeycomb Electrodes of Silicon-Decorated Carbon Nanofibers for Li-Ion Batteries | ACS Applied Materials & Interfaces

Si-Graphite Powercell Modules - Now Available - YouTube
Si-Graphite Powercell Modules - Now Available - YouTube

Nanomaterials | Free Full-Text | Graphene in Solid-State Batteries: An  Overview
Nanomaterials | Free Full-Text | Graphene in Solid-State Batteries: An Overview

Practical Approach to Enhance Compatibility in Silicon/Graphite Composites  to Enable High-Capacity Li-Ion Battery Anodes | ACS Omega
Practical Approach to Enhance Compatibility in Silicon/Graphite Composites to Enable High-Capacity Li-Ion Battery Anodes | ACS Omega

Nanostructured Silicon–Carbon 3D Electrode Architectures for  High-Performance Lithium-Ion Batteries | ACS Omega
Nanostructured Silicon–Carbon 3D Electrode Architectures for High-Performance Lithium-Ion Batteries | ACS Omega

Silicon anode lithium-ion battery cell with 500 Wh/kg density – pv magazine  International
Silicon anode lithium-ion battery cell with 500 Wh/kg density – pv magazine International

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

Frontiers | Excellent Cyclic and Rate Performances of SiO/C/Graphite  Composites as Li-Ion Battery Anode
Frontiers | Excellent Cyclic and Rate Performances of SiO/C/Graphite Composites as Li-Ion Battery Anode

Suppressed Volume Change of a Spray-Dried 3D Spherical-like Si/Graphite  Composite Anode for High-Rate and Long-Term Lithium-Ion Batteries | ACS  Sustainable Chemistry & Engineering
Suppressed Volume Change of a Spray-Dried 3D Spherical-like Si/Graphite Composite Anode for High-Rate and Long-Term Lithium-Ion Batteries | ACS Sustainable Chemistry & Engineering

Inorganics | Free Full-Text | Silicon Anode: A Perspective on Fast Charging  Lithium-Ion Battery
Inorganics | Free Full-Text | Silicon Anode: A Perspective on Fast Charging Lithium-Ion Battery