Although sodium–sulfur (Na–S) batteries present the great prospects of high energy density, long cyclability, and sustainability, their deployment is heavily encumbered by safety, practicality, and versatility issues engendered by their high operating temperatures above 300 °C. Lowering the operating temperatures impedes the performance of Na–S batteries due to the formation of insulating S/polysulfides, diminished Na ion conduction in the β”-alumina solid electrolyte (BASE), the Na metal dendrite growth at temperatures below its melting point, and the shuttle effect occurring in the absence of the BASE. Herein, a Na–S battery that integrates a dual electrolyte consisting of the BASE and a novel inorganic ionic liquid is proposed for interm...
Dual-ion sodium-organic secondary batteries were produced with anti-aromatic porphyrinoid, NiNc, as ...
After decades of rapid development, lithium-ion batteries have achieved significant commercial succe...
A hybrid inorganic–organic ionic liquid based on sodium bis(fluorosulfonyl)amide (Na[FSA]) and [N-et...
The successful commercialization of sodium-ion batteries is heavily contingent on the development of...
Lithium metal is considered to be the ultimate negative electrode material to maximize the energy de...
High power and energy density, long cyclability, and tolerance for wide temperature (seasonal and da...
© 2018, The Author(s). High-temperature sodium–sulfur batteries operating at 300–350 °C have been co...
The physicochemical properties of molten alkali bis(trifluoromethylsulfonyl)amide, MTFSI (M = Li, K,...
The development of Na secondary batteries that exhibit both sustainability and high energy density a...
Thermal properties of alkali bis(fluorosulfonyl)amides, MFSI (M = Li, Na, K, Rb, Cs), have been inve...
Sodium ion batteries have been developed using ionic liquids as electrolytes. Sodium is superior to ...
The exploration of solid polymer electrolytes with both superior ionic conductivity and high mechani...
Innovation in the design of electrolyte materials is crucial for realizing next-generation electroch...
Positive electrode materials with a wide operating temperature range and high energy and power densi...
Although high-capacity negative electrode materials are seen as a propitious strategy for improving ...
Dual-ion sodium-organic secondary batteries were produced with anti-aromatic porphyrinoid, NiNc, as ...
After decades of rapid development, lithium-ion batteries have achieved significant commercial succe...
A hybrid inorganic–organic ionic liquid based on sodium bis(fluorosulfonyl)amide (Na[FSA]) and [N-et...
The successful commercialization of sodium-ion batteries is heavily contingent on the development of...
Lithium metal is considered to be the ultimate negative electrode material to maximize the energy de...
High power and energy density, long cyclability, and tolerance for wide temperature (seasonal and da...
© 2018, The Author(s). High-temperature sodium–sulfur batteries operating at 300–350 °C have been co...
The physicochemical properties of molten alkali bis(trifluoromethylsulfonyl)amide, MTFSI (M = Li, K,...
The development of Na secondary batteries that exhibit both sustainability and high energy density a...
Thermal properties of alkali bis(fluorosulfonyl)amides, MFSI (M = Li, Na, K, Rb, Cs), have been inve...
Sodium ion batteries have been developed using ionic liquids as electrolytes. Sodium is superior to ...
The exploration of solid polymer electrolytes with both superior ionic conductivity and high mechani...
Innovation in the design of electrolyte materials is crucial for realizing next-generation electroch...
Positive electrode materials with a wide operating temperature range and high energy and power densi...
Although high-capacity negative electrode materials are seen as a propitious strategy for improving ...
Dual-ion sodium-organic secondary batteries were produced with anti-aromatic porphyrinoid, NiNc, as ...
After decades of rapid development, lithium-ion batteries have achieved significant commercial succe...
A hybrid inorganic–organic ionic liquid based on sodium bis(fluorosulfonyl)amide (Na[FSA]) and [N-et...