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Electrode Materials for Lithium Ion Batteries
Electrode Materials for Lithium Ion Batteries

Performance evaluation of capacity-limited... | Download Scientific Diagram
Performance evaluation of capacity-limited... | Download Scientific Diagram

ViPER - Research
ViPER - Research

Capacity fade in high energy silicon-graphite electrodes for lithium-ion  batteries - Chemical Communications (RSC Publishing)
Capacity fade in high energy silicon-graphite electrodes for lithium-ion batteries - Chemical Communications (RSC Publishing)

Towards maximized volumetric capacity via pore-coordinated design for  large-volume-change lithium-ion battery anodes | Nature Communications
Towards maximized volumetric capacity via pore-coordinated design for large-volume-change lithium-ion battery anodes | Nature Communications

Application Note: Graphite against Lithium – A poor Battery | EL-CELL
Application Note: Graphite against Lithium – A poor Battery | EL-CELL

a) Theoretical capacities of Li metal, graphite (LiC 6 ), and Mg-metal... |  Download Scientific Diagram
a) Theoretical capacities of Li metal, graphite (LiC 6 ), and Mg-metal... | Download Scientific Diagram

High Voltage Li-Ion Battery Using Exfoliated Graphite/Graphene Nanosheets  Anode. | Semantic Scholar
High Voltage Li-Ion Battery Using Exfoliated Graphite/Graphene Nanosheets Anode. | Semantic Scholar

From spent graphite to recycle graphite anode for high-performance l
From spent graphite to recycle graphite anode for high-performance l

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

A Novel Aluminum–Graphite Dual‐Ion Battery - Zhang - 2016 - Advanced Energy  Materials - Wiley Online Library
A Novel Aluminum–Graphite Dual‐Ion Battery - Zhang - 2016 - Advanced Energy Materials - Wiley Online Library

Energies | Free Full-Text | Electrochemical Impedance Spectroscopy on the  Performance Degradation of LiFePO4/Graphite Lithium-Ion Battery Due to  Charge-Discharge Cycling under Different C-Rates
Energies | Free Full-Text | Electrochemical Impedance Spectroscopy on the Performance Degradation of LiFePO4/Graphite Lithium-Ion Battery Due to Charge-Discharge Cycling under Different C-Rates

Sustainability | Free Full-Text | Capacity Fade in Lithium-Ion Batteries  and Cyclic Aging over Various State-of-Charge Ranges
Sustainability | Free Full-Text | Capacity Fade in Lithium-Ion Batteries and Cyclic Aging over Various State-of-Charge Ranges

Ceylon Graphite Succeeds in Producing High-Performance Coated Spherical  Vein Graphite for Lithium-ion Battery Anode Materials | Ceylon Graphite
Ceylon Graphite Succeeds in Producing High-Performance Coated Spherical Vein Graphite for Lithium-ion Battery Anode Materials | Ceylon Graphite

Graphite For Li-Ion Batteries
Graphite For Li-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

Superior fast-charging capability of graphite anode via facile surface  treatment for lithium-ion batteries - ScienceDirect
Superior fast-charging capability of graphite anode via facile surface treatment for lithium-ion batteries - ScienceDirect

Scientists fabricate defect-free graphene, set record reversible capacity  for Co3O4 anode in Li-ion batteries
Scientists fabricate defect-free graphene, set record reversible capacity for Co3O4 anode in Li-ion batteries

Graphite demand from lithium ion batteries to more than treble in 4 years |  Benchmark
Graphite demand from lithium ion batteries to more than treble in 4 years | Benchmark

ViPER - Research
ViPER - Research

A Lithium-ion Battery Using Partially Lithiated Graphite Anode and  Amphi-redox LiMn2O4 Cathode | Scientific Reports
A Lithium-ion Battery Using Partially Lithiated Graphite Anode and Amphi-redox LiMn2O4 Cathode | Scientific Reports

Understanding the mechanism of capacity increase during early cycling of  commercial NMC/graphite lithium-ion batteries - ScienceDirect
Understanding the mechanism of capacity increase during early cycling of commercial NMC/graphite lithium-ion batteries - ScienceDirect

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

Capacity fade in high energy silicon-graphite electrodes for lithium-ion  batteries (Journal Article) | DOE PAGES
Capacity fade in high energy silicon-graphite electrodes for lithium-ion batteries (Journal Article) | DOE PAGES

Focus Graphite Creates a 613 mAh/Kg Reversible Capacity
Focus Graphite Creates a 613 mAh/Kg Reversible Capacity