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The effect of electrode design parameters on battery performance and  optimization of electrode thickness based on the electrochemical–thermal  coupling model - Sustainable Energy & Fuels (RSC Publishing)
The effect of electrode design parameters on battery performance and optimization of electrode thickness based on the electrochemical–thermal coupling model - Sustainable Energy & Fuels (RSC Publishing)

Thick Electrode Batteries: Principles, Opportunities, and Challenges -  Kuang - 2019 - Advanced Energy Materials - Wiley Online Library
Thick Electrode Batteries: Principles, Opportunities, and Challenges - Kuang - 2019 - Advanced Energy Materials - Wiley Online Library

An empirical model for high energy density lithium-(ion) batteries with  ultra-thick electrodes | SpringerLink
An empirical model for high energy density lithium-(ion) batteries with ultra-thick electrodes | 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

Vertically assembled nanosheet networks for high-density thick battery  electrodes | PNAS
Vertically assembled nanosheet networks for high-density thick battery electrodes | PNAS

Thick Electrode Design for Facile Electron and Ion Transport:  Architectures, Advanced Characterization, and Modeling | Accounts of  Materials Research
Thick Electrode Design for Facile Electron and Ion Transport: Architectures, Advanced Characterization, and Modeling | Accounts of Materials Research

Impedance Spectroscopy Characterization of Porous Electrodes under  Different Electrode Thickness Using a Symmetric Cell for High-Performance  Lithium-Ion Batteries | The Journal of Physical Chemistry C
Impedance Spectroscopy Characterization of Porous Electrodes under Different Electrode Thickness Using a Symmetric Cell for High-Performance Lithium-Ion Batteries | The Journal of Physical Chemistry C

Understanding capacity fading mechanism of thick electrodes for lithium-ion  rechargeable batteries
Understanding capacity fading mechanism of thick electrodes for lithium-ion rechargeable batteries

Batteries | Free Full-Text | Strategies and Challenge of Thick Electrodes  for Energy Storage: A Review
Batteries | Free Full-Text | Strategies and Challenge of Thick Electrodes for Energy Storage: A Review

Thicker, carbon fiber-reinforced battery electrodes may enable high-density  batteries | CompositesWorld
Thicker, carbon fiber-reinforced battery electrodes may enable high-density batteries | CompositesWorld

Thickness-independent scalable high-performance Li-S batteries with high  areal sulfur loading via electron-enriched carbon framework | Nature  Communications
Thickness-independent scalable high-performance Li-S batteries with high areal sulfur loading via electron-enriched carbon framework | Nature Communications

The effect of varying electrode thickness. a Specific capacity versus... |  Download Scientific Diagram
The effect of varying electrode thickness. a Specific capacity versus... | Download Scientific Diagram

A lithium superionic conductor for millimeter-thick battery electrode |  Science
A lithium superionic conductor for millimeter-thick battery electrode | Science

Batteries | Free Full-Text | The Effect of Electrode Thickness on the  High-Current Discharge and Long-Term Cycle Performance of a Lithium-Ion  Battery
Batteries | Free Full-Text | The Effect of Electrode Thickness on the High-Current Discharge and Long-Term Cycle Performance of a Lithium-Ion Battery

Thick electrodes for Li-ion batteries: A model based analysis -  ScienceDirect
Thick electrodes for Li-ion batteries: A model based analysis - ScienceDirect

The effect of electrode thickness on the cell voltage curves, for (a) |  Download Scientific Diagram
The effect of electrode thickness on the cell voltage curves, for (a) | Download Scientific Diagram

Thick Electrode Design for Facile Electron and Ion Transport:  Architectures, Advanced Characterization, and Modeling | Accounts of  Materials Research
Thick Electrode Design for Facile Electron and Ion Transport: Architectures, Advanced Characterization, and Modeling | Accounts of Materials Research

Electrode thickness matching for achieving high-volumetric-performance  lithium-ion capacitors - ScienceDirect
Electrode thickness matching for achieving high-volumetric-performance lithium-ion capacitors - ScienceDirect

Batteries | Free Full-Text | The Effect of Electrode Thickness on the  High-Current Discharge and Long-Term Cycle Performance of a Lithium-Ion  Battery
Batteries | Free Full-Text | The Effect of Electrode Thickness on the High-Current Discharge and Long-Term Cycle Performance of a Lithium-Ion Battery

Battery Electrode Structuring | NanoManufacturing
Battery Electrode Structuring | NanoManufacturing

Battery Electrode Structuring | NanoManufacturing
Battery Electrode Structuring | NanoManufacturing

The effect of electrode design parameters on battery performance and  optimization of electrode thickness based on the electrochemical–thermal  coupling ... - Sustainable Energy & Fuels (RSC Publishing)  DOI:10.1039/C8SE00503F
The effect of electrode design parameters on battery performance and optimization of electrode thickness based on the electrochemical–thermal coupling ... - Sustainable Energy & Fuels (RSC Publishing) DOI:10.1039/C8SE00503F

New manufacturing approach slices lithium-ion battery cost in half
New manufacturing approach slices lithium-ion battery cost in half

The Effect of Electrode Thickness on the High-Current Discharge and  Long-Term Cycle Performance of a Lithium-Ion Battery
The Effect of Electrode Thickness on the High-Current Discharge and Long-Term Cycle Performance of a Lithium-Ion Battery

Understanding Thickness-Dependent Transport Kinetics in Nanosheet-Based Battery  Electrodes
Understanding Thickness-Dependent Transport Kinetics in Nanosheet-Based Battery Electrodes

Strategies and Challenge of Thick Electrodes for Energy Storage: A Review
Strategies and Challenge of Thick Electrodes for Energy Storage: A Review