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Document & Link Library
- Content
- 125 Years of Synthetic Graphite in Batteries
- (Video) Synthetic vs Natural Anode - Which is Better? (Deep Dive)
- Natural Graphite Purification Report
- Graphite Facts
- (Videos) iTech Minerals: Exploration Projects (Graphite)
- (Video) iTech Minerals: Why Metallurgy is the Key to Unlocking the Value in Graphite Deposits
- (Video) iTech Minerals: A Deep Dive into Metallurgy and the Sugarloaf Graphite Prospect
- (Video) Andrew Scogings Presents 'Natural Graphite 101 - Not All Graphite is Created Equal'
- (Videos) Ceylon Graphite
- (Videos) Hazer Group Limited
- (Videos) GraphiteHub: Interview Series
- (Videos) Lithium Energy
- (Videos) Nouveau Monde Graphite
- (Videos) Northern Graphite
- (Videos) Syrah Resources
- (Videos) Talga Group
- (Video) The Whole Process of Synthetic Graphite Anode Material Production
- (Video) Lithium Battery Artificial Graphite Anode Material Production Line
- Powder Rheology of Graphite: Characterization of Natural and Synthetic Graphite for Battery Anode Slurries
- Kentucky Geological Survey: Coal Rank
- Content
- Microstructure Modulation of Hard Carbon Derived from Long-Flame Coal to Improve Electrochemical Sodium Storage Performances
- Iron Catalysed Graphitization of Victorian Brown Coal Monoliths
- Methane Pyrolysis by Joule Heating for Graphitic Carbon and Hydrogen Production
- Sustainable Carbon Materials from Methane Pyrolysis for Energy Applications
- Dual-Functional Graphitic Carbon Materials from Methane Pyrolysis for Lithium-Ion Batteries
- Characterization of Particles Generated by Non-Catalytic Methane Pyrolysis in a Tubular Flow Reactor
- Coal Tar-Coated Artificial Graphite Anode Derived from Polyethylene for Lithium-Ion Batteries
- Spherical Graphite Anodes: Influence of Particle Size Distribution and Multilayer Structuring in Lithium-Ion Battery Cells
- Purification of Spherical Graphite as Anode for Li-Ion Battery: A Comparative Study on the Purifying Approaches
- Application of the Multi-Species, Multi-Reaction Model to Coal-Derived Graphite for Lithium-Ion Batteries
- Impact of Graphitization Degree on the Electrochemical and Thermal Properties of Coal
- Graphite Made from Coal by High-Temperature Treatment: An Insight into the Nanometric Carbon Structural Evolution
- Anthracite-Based Expanded Graphite as Anode Materials for Sodium-Ion Batteries with Exceptional Sodium Storage Performances
- Regulating Composition and Structure of Coal-Based Graphene and Its Electrochemical Characteristics
- Chemical Structure Evolution of Thermally Altered Coal during the Preparation of Coal-Based Graphene and Division of Thermally Altered Zone: Based on FTIR and Raman
- Investigation on Spectroscopy Characteristics of Different Metamorphic Degrees of Coal-Based Graphite
- Preparation of Coal-Based Graphene by Flash Joule Heating
- Temperature-Dependent Structural Evolution of Coal-Based Graphite During Synthetic Graphitization Process
- Conversion of Methane to Graphite-Like Carbon Nanoparticles Using a Low-Temperature Dusty Plasma
- Local Thermochemical Mechanisms in Direct Solar Graphite Synthesis from Methane
- Methane-to-Graphite: A Pathway to Reduce Greenhouse Gas Emissions in the U.S. Energy Transition
- Optimizing Methane Plasma Pyrolysis for Instant Hydrogen and High-Quality Carbon Production
- (Master's Thesis) Methane Pyrolysis
- Methane Pyrolysis in Molten Media: The Interplay of Physical Properties and Catalytic Activity on Carbon and Hydrogen Production
- Synthesizing Highly Crystalline Graphite Powder from Bulk Polyethylene Waste for Lithium-Ion Battery Anodes
- Recycling of Polyethylene via Hydrothermal Carbonization for the Li-Ion Battery Anode
- Graphite Flows in the U.S.: Insights into a Key Ingredient of Energy Transition
- Synthetic Pitch from Solvent Extraction of Coal as a Source for High-Quality Graphite
- Graphite Equivalent Evaluation of Anthracite-Associated Graphite by Raman Spectroscopy
- Catalytic Graphitization of Coke and Electrochemical Performances of Coke-Based Graphite
- Research on Anthracite-Derived Graphite Flakes Prepared by Molten Salt Electrolysis as Anode Materials for High-Performance Lithium-Ion Batteries
- The Evolution of Coal, Examining the Transitions from Anthracite to Natural Graphite: A Spectroscopy and Optical Microscopy Evaluation
- Synthetic Pitch from Solvent Extraction of Coal as a Source for High-Quality Graphite
- Continuous Solar-Thermal Methane Pyrolysis for Hydrogen and Graphite Production by Roll-to-Roll Processing
- Catalytic Methane Pyrolysis for Simultaneous Production of Hydrogen and Graphitic Carbon Using a Ceramic Sparger in a Molten NiSn Alloy
- A Review of Methane Pyrolysis Technologies for Hydrogen Production
- Literature Review of the Catalytic Pyrolysis of Methane for Hydrogen and Carbon Production
- Influence of Process Parameters on Direct Solar-Thermal Hydrogen and Graphite Production via Methane Pyrolysis
- Characterization of Carbon Products from Microwave-Driven Methane Pyrolysis
- Valorizing the Carbon Byproduct of Methane Pyrolysis in Batteries
- Methane Pyrolysis Over Porous Particles
- Carbon Film Produced from Microwave-Driven Methane Pyrolysis
- Revisiting the Roles of Natural Graphite in Ongoing Lithium-Ion Batteries
- Microstructural Characteristics of Graphite Microcrystals in Graphitized Coal: Insights from Petrology, Mineralogy and Spectroscopy
- Effects of Coal Rank and Macerals on the Structure Characteristics of Coal-Based Graphene Materials from Anthracite in Qinshui Coalfield
- A Process for Developing Spherical Graphite from Coal Tar as High Performing Carbon Anode for Li-ion Batteries
- Electrochemical Performance of Expanded Graphite Prepared from Anthracite via a Microwave Method
- Solar–Thermal Production of Graphitic Carbon and Hydrogen via Methane Decomposition
- Recent Advances in Methane Pyrolysis: Turquoise Hydrogen with Solid Carbon Production
- Structure-Oriented Conversions of Plastics to Carbon Nanomaterials
- Achieving High-Performance Spherical Natural Graphite Anode Through a Modified Carbon Coating for Lithium-Ion Batteries
- (Master's Thesis) Structural Characterization of Carbons Derived from Methane Pyrolysis
- An Analysis of Artificial and Natural Graphite in Lithium Ion Pouch Cells Using Ultra-High Precision Coulometry, Isothermal Microcalorimetry, Gas Evolution, Long Term Cycling and Pressure Measurements
