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Title: Designing Lithium-Sulfur Cells with Practically Necessary Parameters

Journal Article · · Joule
 [1];  [1]
  1. Univ. of Texas at Austin, Austin, TX (United States)

Here, the capacity limitation of insertion-compound cathodes hampers the development of high-energy-density lithium-ion batteries and thus has generated immense interest in conversion-reaction cathodes, such as sulfur. With no restriction to maintain their initial physicochemical properties, sulfur cathodes offer a high theoretical capacity (1,675 mA hr g–1). However, the amounts of sulfur and electrolyte that drastically affect the battery electrochemistry have been ignored for years; thereby, the cathode performances have often been overrated.

Research Organization:
Univ. of Texas, Austin, TX (United States)
Sponsoring Organization:
USDOE Office of Energy Efficiency and Renewable Energy (EERE)
Grant/Contract Number:
EE0007218
OSTI ID:
1488316
Journal Information:
Joule, Vol. 2, Issue 4; ISSN 2542-4351
Publisher:
Elsevier - Cell PressCopyright Statement
Country of Publication:
United States
Language:
English
Citation Metrics:
Cited by: 126 works
Citation information provided by
Web of Science

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Cited By (20)

The Radical Pathway Based on a Lithium‐Metal‐Compatible High‐Dielectric Electrolyte for Lithium–Sulfur Batteries journal December 2018
ZnS coating of cathode facilitates lean‐electrolyte Li‐S batteries journal October 2019
Electrochemical properties of high-loading sulfur–carbon materials prepared by in situ generation method journal May 2019
Progress on the Critical Parameters for Lithium-Sulfur Batteries to be Practically Viable journal May 2018
NiCo 2 O 4 Nanofibers as Carbon‐Free Sulfur Immobilizer to Fabricate Sulfur‐Based Composite with High Volumetric Capacity for Lithium–Sulfur Battery journal January 2019
A simple and general approach for in situ synthesis of sulfur–porous carbon composites for lithium–sulfur batteries journal January 2019
A Facile, Low-Cost Hot-Pressing Process for Fabricating Lithium-Sulfur Cells with Stable Dynamic and Static Electrochemistry journal October 2018
Intercalation-conversion hybrid cathodes enabling Li–S full-cell architectures with jointly superior gravimetric and volumetric energy densities journal March 2019
Dictating High‐Capacity Lithium–Sulfur Batteries through Redox‐Mediated Lithium Sulfide Growth journal June 2019
The Radical Pathway Based on a Lithium‐Metal‐Compatible High‐Dielectric Electrolyte for Lithium–Sulfur Batteries journal December 2018
Stabilization of Li–S batteries with a lean electrolyte via ion-exchange trapping of lithium polysulfides using a cationic, polybenzimidazolium binder journal January 2020
Bridging the academic and industrial metrics for next-generation practical batteries journal February 2019
Nitrogen–sulfur dual-doped porous carbon spheres/sulfur composites for high-performance lithium–sulfur batteries journal January 2019
A sustainable sulfur–carbonaceous composite electrode toward high specific energy rechargeable cells journal January 2020
How Far Away Are Lithium-Sulfur Batteries From Commercialization? journal November 2019
Rational design of two-dimensional nanomaterials for lithium–sulfur batteries journal January 2020
Exceptional catalytic effects of black phosphorus quantum dots in shuttling-free lithium sulfur batteries journal October 2018
Visualization of regulated nucleation and growth of lithium sulfides for high energy lithium sulfur batteries journal January 2019
Sulfur Redox Reactions at Working Interfaces in Lithium-Sulfur Batteries: A Perspective journal January 2019
Current Status and Future Prospects of Metal–Sulfur Batteries journal May 2019

Figures / Tables (5)