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Cellulose-based electrode materials in Li-Sulfur batteries (A)... |  Download Scientific Diagram
Cellulose-based electrode materials in Li-Sulfur batteries (A)... | Download Scientific Diagram

Potassium‐Ion Storage in Cellulose‐Derived Hard Carbon: The Role of  Functional Groups - Nanjundan - 2020 - Batteries & Supercaps - Wiley  Online Library
Potassium‐Ion Storage in Cellulose‐Derived Hard Carbon: The Role of Functional Groups - Nanjundan - 2020 - Batteries & Supercaps - Wiley Online Library

Cellulose-derived flake graphite as positive electrodes for Al-ion batteries  - Sustainable Energy & Fuels (RSC Publishing) DOI:10.1039/C9SE00656G
Cellulose-derived flake graphite as positive electrodes for Al-ion batteries - Sustainable Energy & Fuels (RSC Publishing) DOI:10.1039/C9SE00656G

A Review: The Development of SiO2/C Anode Materials for Lithium-Ion  Batteries | SpringerLink
A Review: The Development of SiO2/C Anode Materials for Lithium-Ion Batteries | SpringerLink

Cellulose and its derivatives for lithium ion battery separators: A review  on the processing methods and properties - ScienceDirect
Cellulose and its derivatives for lithium ion battery separators: A review on the processing methods and properties - ScienceDirect

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

Microfibrillated cellulose–graphite nanocomposites for highly flexible  paper-like Li-ion battery electrodes - Journal of Materials Chemistry (RSC  Publishing)
Microfibrillated cellulose–graphite nanocomposites for highly flexible paper-like Li-ion battery electrodes - Journal of Materials Chemistry (RSC Publishing)

Bacterial cellulose-derived carbon nanofibers as anode for lithium-ion  batteries | SpringerLink
Bacterial cellulose-derived carbon nanofibers as anode for lithium-ion batteries | SpringerLink

Toward Li-ion Graphite Anodes with Enhanced Mechanical and Electrochemical  Properties Using Binders from Chemically Modified Cellulose Fibers | ACS  Applied Energy Materials
Toward Li-ion Graphite Anodes with Enhanced Mechanical and Electrochemical Properties Using Binders from Chemically Modified Cellulose Fibers | ACS Applied Energy Materials

Scalable Fabrication of Silicon‐Graphite Microsphere by Mechanical  Processing for Lithium‐Ion Battery Anode with Large Capacity and High  Cycling Stability - Shen - 2022 - Batteries & Supercaps - Wiley Online  Library
Scalable Fabrication of Silicon‐Graphite Microsphere by Mechanical Processing for Lithium‐Ion Battery Anode with Large Capacity and High Cycling Stability - Shen - 2022 - Batteries & Supercaps - Wiley Online Library

Poly (acrylic acid sodium) grafted carboxymethyl cellulose as a high  performance polymer binder for silicon anode in lithium ion batteries |  Scientific Reports
Poly (acrylic acid sodium) grafted carboxymethyl cellulose as a high performance polymer binder for silicon anode in lithium ion batteries | Scientific Reports

PDF] Effect of Carboxymethyl Cellulose on Aqueous Processing of Natural  Graphite Negative Electrodes and their Electrochemical Performance for  Lithium Batteries | Semantic Scholar
PDF] Effect of Carboxymethyl Cellulose on Aqueous Processing of Natural Graphite Negative Electrodes and their Electrochemical Performance for Lithium Batteries | Semantic Scholar

Graphene-Like-Graphite as Fast-Chargeable and High-Capacity Anode Materials  for Lithium Ion Batteries | Scientific Reports
Graphene-Like-Graphite as Fast-Chargeable and High-Capacity Anode Materials for Lithium Ion Batteries | Scientific Reports

Cellulose-derived flake graphite as positive electrodes for Al-ion batteries  - Sustainable Energy & Fuels (RSC Publishing)
Cellulose-derived flake graphite as positive electrodes for Al-ion batteries - Sustainable Energy & Fuels (RSC Publishing)

Recycling of graphite anode from spent lithium‐ion batteries: Advances and  perspectives - Qiao - EcoMat - Wiley Online Library
Recycling of graphite anode from spent lithium‐ion batteries: Advances and perspectives - Qiao - EcoMat - Wiley Online Library

Nanocellulose‐based electrodes, all‐paper batteries, and carbonaceous... |  Download Scientific Diagram
Nanocellulose‐based electrodes, all‐paper batteries, and carbonaceous... | Download Scientific Diagram

Lignode® by Stora Enso - Bio-based materials | Stora Enso
Lignode® by Stora Enso - Bio-based materials | Stora Enso

Single-paper flexible Li-ion battery cells through a paper-making process  based on nano-fibrillated cellulose | Semantic Scholar
Single-paper flexible Li-ion battery cells through a paper-making process based on nano-fibrillated cellulose | Semantic Scholar

Pyrolyzed pencil graphite coated cellulose paper as an interlayer: An  effective approach for high-performance lithium-sulfur battery -  ScienceDirect
Pyrolyzed pencil graphite coated cellulose paper as an interlayer: An effective approach for high-performance lithium-sulfur battery - ScienceDirect

From waste graphite fines to revalorized anode material for Li-ion batteries  - ScienceDirect
From waste graphite fines to revalorized anode material for Li-ion batteries - ScienceDirect

Influence of molecular weight and concentration of carboxymethyl cellulose  on rheological properties of concentrated anode slurries for lithium-ion  batteries - ScienceDirect
Influence of molecular weight and concentration of carboxymethyl cellulose on rheological properties of concentrated anode slurries for lithium-ion batteries - ScienceDirect

Toward Li-ion Graphite Anodes with Enhanced Mechanical and Electrochemical  Properties Using Binders from Chemically Modified Cellulose Fibers | ACS  Applied Energy Materials
Toward Li-ion Graphite Anodes with Enhanced Mechanical and Electrochemical Properties Using Binders from Chemically Modified Cellulose Fibers | ACS Applied Energy Materials

Batteries | Free Full-Text | Current Advances in TiO2-Based Nanostructure  Electrodes for High Performance Lithium Ion Batteries
Batteries | Free Full-Text | Current Advances in TiO2-Based Nanostructure Electrodes for High Performance Lithium Ion Batteries

Frontiers | Nature-Derived Cellulose-Based Composite Separator for  Sodium-Ion Batteries
Frontiers | Nature-Derived Cellulose-Based Composite Separator for Sodium-Ion Batteries

Tin-graphene tubes as anodes for lithium-ion batteries with high volumetric  and gravimetric energy densities | Nature Communications
Tin-graphene tubes as anodes for lithium-ion batteries with high volumetric and gravimetric energy densities | Nature Communications

Graphene/Na carboxymethyl cellulose composite for Li-ion batteries prepared  by enhanced liquid exfoliation - ScienceDirect
Graphene/Na carboxymethyl cellulose composite for Li-ion batteries prepared by enhanced liquid exfoliation - ScienceDirect

Feasibility of Chemically Modified Cellulose Nanofiber Membranes as  Lithium-Ion Battery Separators | ACS Applied Materials & Interfaces
Feasibility of Chemically Modified Cellulose Nanofiber Membranes as Lithium-Ion Battery Separators | ACS Applied Materials & Interfaces