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Free-Standing Selenium Impregnated Carbonized Leaf Cathodes for  High-Performance Sodium-Selenium Batteries | Nanoscale Research Letters |  Full Text
Free-Standing Selenium Impregnated Carbonized Leaf Cathodes for High-Performance Sodium-Selenium Batteries | Nanoscale Research Letters | Full Text

GM researchers demonstrate hierarchical electrode architectures for high  energy lithium-chalcogen rechargeable batteries - Green Car Congress
GM researchers demonstrate hierarchical electrode architectures for high energy lithium-chalcogen rechargeable batteries - Green Car Congress

High-power lithium–selenium batteries enabled by atomic cobalt  electrocatalyst in hollow carbon cathode | Nature Communications
High-power lithium–selenium batteries enabled by atomic cobalt electrocatalyst in hollow carbon cathode | Nature Communications

Team reveals simple method to produce high-performing lithium selenium  batteries
Team reveals simple method to produce high-performing lithium selenium batteries

High-power lithium–selenium batteries enabled by atomic cobalt  electrocatalyst in hollow carbon cathode | Nature Communications
High-power lithium–selenium batteries enabled by atomic cobalt electrocatalyst in hollow carbon cathode | Nature Communications

Hollow selenium encapsulated into 3D graphene hydrogels for lithium–selenium  batteries with high rate performance and cycling stability - RSC Advances  (RSC Publishing) DOI:10.1039/C6RA28463A
Hollow selenium encapsulated into 3D graphene hydrogels for lithium–selenium batteries with high rate performance and cycling stability - RSC Advances (RSC Publishing) DOI:10.1039/C6RA28463A

Selenium or Tellurium as Eutectic Accelerators for High-Performance Lithium/Sodium–Sulfur  Batteries | SpringerLink
Selenium or Tellurium as Eutectic Accelerators for High-Performance Lithium/Sodium–Sulfur Batteries | SpringerLink

Selenium or Tellurium as Eutectic Accelerators for High-Performance Lithium/Sodium–Sulfur  Batteries | SpringerLink
Selenium or Tellurium as Eutectic Accelerators for High-Performance Lithium/Sodium–Sulfur Batteries | SpringerLink

The rise of lithium–selenium batteries - Sustainable Energy & Fuels (RSC  Publishing) DOI:10.1039/C6SE00094K
The rise of lithium–selenium batteries - Sustainable Energy & Fuels (RSC Publishing) DOI:10.1039/C6SE00094K

Alkaline lignin derived porous carbon as an efficient scaffold for lithium-selenium  battery cathode - ScienceDirect
Alkaline lignin derived porous carbon as an efficient scaffold for lithium-selenium battery cathode - ScienceDirect

Solid State Lithium Sulfur and Lithium Selenium Batteries › Sustainable  Skies
Solid State Lithium Sulfur and Lithium Selenium Batteries › Sustainable Skies

A pyrolyzed polyacrylonitrile/selenium disulfide composite cathode with  remarkable lithium and sodium storage performances
A pyrolyzed polyacrylonitrile/selenium disulfide composite cathode with remarkable lithium and sodium storage performances

Lithium–sulfur battery - Wikipedia
Lithium–sulfur battery - Wikipedia

Freestanding layer-structure selenium cathodes with ultrahigh Se loading  for high areal capacity Li-Se batteries - ScienceDirect
Freestanding layer-structure selenium cathodes with ultrahigh Se loading for high areal capacity Li-Se batteries - ScienceDirect

High-power lithium–selenium batteries enabled by atomic cobalt  electrocatalyst in hollow carbon cathode | Nature Communications
High-power lithium–selenium batteries enabled by atomic cobalt electrocatalyst in hollow carbon cathode | Nature Communications

Insight into sulfur-rich selenium sulfide/pyrolyzed polyacrylonitrile  cathodes for Li–S batteries - Sustainable Energy & Fuels (RSC Publishing)
Insight into sulfur-rich selenium sulfide/pyrolyzed polyacrylonitrile cathodes for Li–S batteries - Sustainable Energy & Fuels (RSC Publishing)

Nanomaterials | Free Full-Text | Durable Lithium/Selenium Batteries Enabled  by the Integration of MOF-Derived Porous Carbon and Alucone Coating | HTML
Nanomaterials | Free Full-Text | Durable Lithium/Selenium Batteries Enabled by the Integration of MOF-Derived Porous Carbon and Alucone Coating | HTML

The rise of lithium–selenium batteries - Sustainable Energy & Fuels (RSC  Publishing) DOI:10.1039/C6SE00094K
The rise of lithium–selenium batteries - Sustainable Energy & Fuels (RSC Publishing) DOI:10.1039/C6SE00094K

A pyrolyzed polyacrylonitrile/selenium disulfide composite cathode with  remarkable lithium and sodium storage performances
A pyrolyzed polyacrylonitrile/selenium disulfide composite cathode with remarkable lithium and sodium storage performances

A stable lithium–selenium interface via solid/liquid hybrid electrolytes:  Blocking polyselenides and suppressing lithium dendrite - ScienceDirect
A stable lithium–selenium interface via solid/liquid hybrid electrolytes: Blocking polyselenides and suppressing lithium dendrite - ScienceDirect

Selenium or Tellurium as Eutectic Accelerators for High-Performance Lithium/Sodium–Sulfur  Batteries | SpringerLink
Selenium or Tellurium as Eutectic Accelerators for High-Performance Lithium/Sodium–Sulfur Batteries | SpringerLink

Could This Liquid Lithium Li-S Battery Have Automotive Applications?
Could This Liquid Lithium Li-S Battery Have Automotive Applications?

Figure 1 from A new class of lithium and sodium rechargeable batteries  based on selenium and selenium-sulfur as a positive electrode. | Semantic  Scholar
Figure 1 from A new class of lithium and sodium rechargeable batteries based on selenium and selenium-sulfur as a positive electrode. | Semantic Scholar

Selenium-Doped Cathodes for Lithium-Organosulfur Batteries with Greatly  Improved Volumetric Capacity and Coulombic Efficiency. | Semantic Scholar
Selenium-Doped Cathodes for Lithium-Organosulfur Batteries with Greatly Improved Volumetric Capacity and Coulombic Efficiency. | Semantic Scholar