Rechargeable potassium–selenium (K–Se) batteries, as an emerging electrochemical energy storage system, has recently captured intensive attention due to the desirable natural abundance and low redox potential of elemental potassium as well as the relatively high electronic conductivity and impressive theoretical volumetric capacity of elemental selenium. Although great progress on cathode materials design and electrochemical performance improvement has been made, K–Se batteries are still confronted with a series of key challenges, including low reactive activity, shuttle effect, volume expansion, potassium dendrite growth, and high chemical activity of potassium metal. The recent advances in rechargeable K–Se batteries are comprehensively s...
The development of rechargeable batteries using K ions as charge carriers has recently attracted con...
Rechargeable sodium-ion batteries (SIBs), as the most promising alternative to commercial lithium-io...
The research of sodium/potassium-ion batteries (SIBs/KIBs) still has some way to go but its success ...
The use of chalcogenide elements, such as sulfur (S) and selenium (Se), as cathode materials in rech...
A new reversible and high-performance potassium-selenium (K-Se) battery, using confined selenium/car...
A new reversible and high-performance potassium-selenium (K-Se) battery, using confined selenium/car...
Rechargeable metal batteries using selenium or selenide as the cathodes have attracted considerable ...
With the superiority of famous energy density and abundant potassium reserves, potassium–selenium (K...
Selenium (Se) cathodes are an exciting emerging high energy density storage system for Potassium ion...
Potassium–sulfur (K–S) batteries are emerging as low-cost and high-capacity energy-storage technolog...
Potassium-ion batteries based on conversion/alloying reactions have high potential applications in n...
We report room-temperature rechargeable potassium–sulfur (K-S) batteries using ordered mesoporous ca...
Potassium-based energy storage technologies, especially potassium ion batteries (PIBs), have receive...
Potassium-ion batteries based on conversion/alloying reactions have high potential applications in n...
Selenium-based materials are considered as desirable candidates for potassium-ion and sodium-ion sto...
The development of rechargeable batteries using K ions as charge carriers has recently attracted con...
Rechargeable sodium-ion batteries (SIBs), as the most promising alternative to commercial lithium-io...
The research of sodium/potassium-ion batteries (SIBs/KIBs) still has some way to go but its success ...
The use of chalcogenide elements, such as sulfur (S) and selenium (Se), as cathode materials in rech...
A new reversible and high-performance potassium-selenium (K-Se) battery, using confined selenium/car...
A new reversible and high-performance potassium-selenium (K-Se) battery, using confined selenium/car...
Rechargeable metal batteries using selenium or selenide as the cathodes have attracted considerable ...
With the superiority of famous energy density and abundant potassium reserves, potassium–selenium (K...
Selenium (Se) cathodes are an exciting emerging high energy density storage system for Potassium ion...
Potassium–sulfur (K–S) batteries are emerging as low-cost and high-capacity energy-storage technolog...
Potassium-ion batteries based on conversion/alloying reactions have high potential applications in n...
We report room-temperature rechargeable potassium–sulfur (K-S) batteries using ordered mesoporous ca...
Potassium-based energy storage technologies, especially potassium ion batteries (PIBs), have receive...
Potassium-ion batteries based on conversion/alloying reactions have high potential applications in n...
Selenium-based materials are considered as desirable candidates for potassium-ion and sodium-ion sto...
The development of rechargeable batteries using K ions as charge carriers has recently attracted con...
Rechargeable sodium-ion batteries (SIBs), as the most promising alternative to commercial lithium-io...
The research of sodium/potassium-ion batteries (SIBs/KIBs) still has some way to go but its success ...