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Investigation of the Effect of Temperature on Lithium‐Sulfur Cell Cycle  Life Performance Using System Identification and X‐Ray Tomography - Shateri  - 2022 - Batteries & Supercaps - Wiley Online Library
Investigation of the Effect of Temperature on Lithium‐Sulfur Cell Cycle Life Performance Using System Identification and X‐Ray Tomography - Shateri - 2022 - Batteries & Supercaps - Wiley Online Library

Outstanding long-cycling lithium−sulfur batteries by core-shell structure of  S@Pt composite with ultrahigh sulfur content - ScienceDirect
Outstanding long-cycling lithium−sulfur batteries by core-shell structure of S@Pt composite with ultrahigh sulfur content - ScienceDirect

Structural Design of Lithium–Sulfur Batteries: From Fundamental Research to  Practical Application | Electrochemical Energy Reviews
Structural Design of Lithium–Sulfur Batteries: From Fundamental Research to Practical Application | Electrochemical Energy Reviews

Frontiers | Preparation of Li2-3xAlxS for All-Solid-State Li-S Battery
Frontiers | Preparation of Li2-3xAlxS for All-Solid-State Li-S Battery

Potassium‐sulfur batteries: Status and perspectives - Zhao - 2020 - EcoMat  - Wiley Online Library
Potassium‐sulfur batteries: Status and perspectives - Zhao - 2020 - EcoMat - Wiley Online Library

A Li2S-based all-solid-state battery with high energy and superior safety |  Science Advances
A Li2S-based all-solid-state battery with high energy and superior safety | Science Advances

Frontiers | How Far Away Are Lithium-Sulfur Batteries From  Commercialization?
Frontiers | How Far Away Are Lithium-Sulfur Batteries From Commercialization?

The 5 th and 6 th cycle voltage profile for Li-S cells with... | Download  Scientific Diagram
The 5 th and 6 th cycle voltage profile for Li-S cells with... | Download Scientific Diagram

BU-501a: Discharge Characteristics of Li-ion - Battery University
BU-501a: Discharge Characteristics of Li-ion - Battery University

Nominal Voltage of Lithium Ion Batteries
Nominal Voltage of Lithium Ion Batteries

Saft LO35SX STS Lithium Battery 2/3 C 2.2 Ah 2.8 V Li-SO2 Cylindrical Cell
Saft LO35SX STS Lithium Battery 2/3 C 2.2 Ah 2.8 V Li-SO2 Cylindrical Cell

a) Discharge/charge curves of the all-solid-state lithiumsulfur... |  Download Scientific Diagram
a) Discharge/charge curves of the all-solid-state lithiumsulfur... | Download Scientific Diagram

Cathode Materials for Lithium Sulfur Batteries: Design, Synthesis, and  Electrochemical Performance | IntechOpen
Cathode Materials for Lithium Sulfur Batteries: Design, Synthesis, and Electrochemical Performance | IntechOpen

A strategic approach to recharging lithium-sulphur batteries for long cycle  life | Nature Communications
A strategic approach to recharging lithium-sulphur batteries for long cycle life | Nature Communications

Cathode materials for lithium-sulfur battery: a review | Journal of Solid  State Electrochemistry
Cathode materials for lithium-sulfur battery: a review | Journal of Solid State Electrochemistry

Batteries | Free Full-Text | Nontrivial Effects of “Trivial” Parameters on  the Performance of Lithium–Sulfur Batteries
Batteries | Free Full-Text | Nontrivial Effects of “Trivial” Parameters on the Performance of Lithium–Sulfur Batteries

Directing the Lithium–Sulfur Reaction Pathway via Sparingly Solvating  Electrolytes for High Energy Density Batteries | ACS Central Science
Directing the Lithium–Sulfur Reaction Pathway via Sparingly Solvating Electrolytes for High Energy Density Batteries | ACS Central Science

A High Performance Lithium-Sulfur Battery Enabled by Fish-Scale Porous  Carbon/Sulfur Composite and Symmetric Fluorinated Diethox
A High Performance Lithium-Sulfur Battery Enabled by Fish-Scale Porous Carbon/Sulfur Composite and Symmetric Fluorinated Diethox

Electrolytes with moderate lithium polysulfide solubility for  high-performance long-calendar-life lithium–sulfur batteries | PNAS
Electrolytes with moderate lithium polysulfide solubility for high-performance long-calendar-life lithium–sulfur batteries | PNAS

Stabilizing the cationic/anionic redox chemistry of Li-rich layered  cathodes by tuning the upper cut-off voltage for high energy-density lithium -ion batteries - Journal of Materials Chemistry A (RSC Publishing)
Stabilizing the cationic/anionic redox chemistry of Li-rich layered cathodes by tuning the upper cut-off voltage for high energy-density lithium -ion batteries - Journal of Materials Chemistry A (RSC Publishing)

How does Internal Resistance affect Performance? - Battery University
How does Internal Resistance affect Performance? - Battery University

Batteries | Free Full-Text | Nontrivial Effects of “Trivial” Parameters on  the Performance of Lithium–Sulfur Batteries
Batteries | Free Full-Text | Nontrivial Effects of “Trivial” Parameters on the Performance of Lithium–Sulfur Batteries

Lithium-Sulfur Batteries - an overview | ScienceDirect Topics
Lithium-Sulfur Batteries - an overview | ScienceDirect Topics

High-Capacity Micrometer-Sized Li2S Particles as Cathode Materials for  Advanced Rechargeable Lithium-Ion Batteries | Journal of the American  Chemical Society
High-Capacity Micrometer-Sized Li2S Particles as Cathode Materials for Advanced Rechargeable Lithium-Ion Batteries | Journal of the American Chemical Society

Advances in Lithium–Sulfur Batteries: From Academic Research to Commercial  Viability - Chen - 2021 - Advanced Materials - Wiley Online Library
Advances in Lithium–Sulfur Batteries: From Academic Research to Commercial Viability - Chen - 2021 - Advanced Materials - Wiley Online Library

Charged EVs | University of Michigan researchers predict 1,000 real-world  cycles for their lithium-sulfur battery - Charged EVs
Charged EVs | University of Michigan researchers predict 1,000 real-world cycles for their lithium-sulfur battery - Charged EVs

A new finding on the role of LiNO3 in lithium-sulfur battery - ScienceDirect
A new finding on the role of LiNO3 in lithium-sulfur battery - ScienceDirect