Based on DFT predictions, a series of highly soluble fluorinated alkoxide-based electrolytes were prepared, examined electrochemically, and reversibly cycled. The alcohols react with ethylmagnesium chloride to generate a fluoroalkoxy-magnesium chloride intermediate, which subsequently reacts with aluminum chloride to generate the electrolyte. Solutions starting from a 1,1,1,3,3,3-hexafluoro-2-methylpropan-2-ol precursor exhibit high anodic stability, 3.2 V vs Mg<sup>2+/0</sup>, and a record 3.5 mS/cm solution conductivity. Excellent galvanostatic cycling and capacity retention (94%) is observed with more than 300 h of cycle time while employing the standard Chevrel phase-Mo<sub>6</sub>S<sub>8</sub> cathode material
The humankind is facing a global transition towards a decarbonized power sector, dominated by renewa...
Rechargeable secondary batteries operating through fluoride-ion shuttling between the positive and n...
Understanding Mg-ion speciation is of utmost importance to the rational design of electrolytes for r...
he lack of electrolytes that simultaneously possess highCoulombic efficiency, conductivity, and volt...
Magnesium-ion batteries are thought to be a viable successor to the current Li-based systems owing t...
Mg(PF₆)₂-based electrolytes for Mg-ion batteries have not received the same attention as the analogo...
Fluorination of ether solvents is an effective strategy to improve the electrochemical stability of ...
A novel electrochemically compatible, high-voltage, and nonflammable electrolyte has been prepared b...
High-performance electrolytes are at the heart of magnesium battery development. Long-term stability...
The rechargeable magnesium (Mg) battery has been considered a promising candidate for future battery...
Electrolytes using fluorinated solvents have proven effective in improving the cycling life of Li-me...
Future energy applications rely on our ability to tune liquid intermolecular interactions and achiev...
Portable electronic devices such as mobile phones, laptops, cameras and electronic vehicles (EVs) wh...
The shortage of high-performance and easily prepared electrolyte has hindered the progress of rechar...
We present a promising electrolyte candidate, Mg(TFSI)<sub>2</sub> dissolved in glyme/diglyme, for ...
The humankind is facing a global transition towards a decarbonized power sector, dominated by renewa...
Rechargeable secondary batteries operating through fluoride-ion shuttling between the positive and n...
Understanding Mg-ion speciation is of utmost importance to the rational design of electrolytes for r...
he lack of electrolytes that simultaneously possess highCoulombic efficiency, conductivity, and volt...
Magnesium-ion batteries are thought to be a viable successor to the current Li-based systems owing t...
Mg(PF₆)₂-based electrolytes for Mg-ion batteries have not received the same attention as the analogo...
Fluorination of ether solvents is an effective strategy to improve the electrochemical stability of ...
A novel electrochemically compatible, high-voltage, and nonflammable electrolyte has been prepared b...
High-performance electrolytes are at the heart of magnesium battery development. Long-term stability...
The rechargeable magnesium (Mg) battery has been considered a promising candidate for future battery...
Electrolytes using fluorinated solvents have proven effective in improving the cycling life of Li-me...
Future energy applications rely on our ability to tune liquid intermolecular interactions and achiev...
Portable electronic devices such as mobile phones, laptops, cameras and electronic vehicles (EVs) wh...
The shortage of high-performance and easily prepared electrolyte has hindered the progress of rechar...
We present a promising electrolyte candidate, Mg(TFSI)<sub>2</sub> dissolved in glyme/diglyme, for ...
The humankind is facing a global transition towards a decarbonized power sector, dominated by renewa...
Rechargeable secondary batteries operating through fluoride-ion shuttling between the positive and n...
Understanding Mg-ion speciation is of utmost importance to the rational design of electrolytes for r...