Sodium-based batteries are very promising for large-scale applications in near future, thanks to the great abundance and low cost of sodium. Herein, a high-performance liquid metal battery with a negative electrode of metallic sodium is developed. As the metallic sodium has a low melting point (~ 98 °C) and weak corrosion to ceramic seals, the sodium liquid metal batteries (Na-LMBs) offer the merits of low operating temperature, low cost, long lifespan and high safety. However, sodium metal has a high dissolution solubility in the electrolyte of single-cationic molten sodium halide mixtures such as NaF-NaCl-NaI due to high melting point above 500 °C, resulting in low coulombic efficiency and high self-discharge. In this work, a multi-cation...
This thesis aims to develop an efficient molten salt electrolyte mixture for Na-Zn liquid metal batt...
Liquid metal batteries (LMBs) are attractive energy storage device for large-scale energy storage sy...
Grid-scale energy storage systems (ESSs) that can connect to sustainable energy resources have recei...
Sodium-based batteries are very promising for large-scale applications in near future, thanks to the...
The decarbonization of the energy intensive industry branches can only be achieved by the implementa...
Liquid metal batteries (LMBs) are characterized by an easy scalability and long life, which makes th...
The demand for efficient and sustainable energy storage technologies has intensified in recent year...
Multi-cationic molten chloride salt mixtures such as LiCl-KCl-NaCl are promising molten salt electro...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Using low-melting-point electrolytes could overcome various key challenges of low-cost sodium-based ...
Rechargeable sodium metal batteries have drawn immense interest as next-generation batteries, owing ...
Liquid metal battery (LMB) is an intriguing energy storage technology with advantages of low-cost, l...
One of the major challenges for development of low-cost low-temperature Na-based LMBs is selection o...
The demand for electrochemical energy storage technologies is rapidly increasing due to the prolifer...
Molten halogen salts are promising electrolytes for LMBs due to their high stability, superior condu...
This thesis aims to develop an efficient molten salt electrolyte mixture for Na-Zn liquid metal batt...
Liquid metal batteries (LMBs) are attractive energy storage device for large-scale energy storage sy...
Grid-scale energy storage systems (ESSs) that can connect to sustainable energy resources have recei...
Sodium-based batteries are very promising for large-scale applications in near future, thanks to the...
The decarbonization of the energy intensive industry branches can only be achieved by the implementa...
Liquid metal batteries (LMBs) are characterized by an easy scalability and long life, which makes th...
The demand for efficient and sustainable energy storage technologies has intensified in recent year...
Multi-cationic molten chloride salt mixtures such as LiCl-KCl-NaCl are promising molten salt electro...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
Using low-melting-point electrolytes could overcome various key challenges of low-cost sodium-based ...
Rechargeable sodium metal batteries have drawn immense interest as next-generation batteries, owing ...
Liquid metal battery (LMB) is an intriguing energy storage technology with advantages of low-cost, l...
One of the major challenges for development of low-cost low-temperature Na-based LMBs is selection o...
The demand for electrochemical energy storage technologies is rapidly increasing due to the prolifer...
Molten halogen salts are promising electrolytes for LMBs due to their high stability, superior condu...
This thesis aims to develop an efficient molten salt electrolyte mixture for Na-Zn liquid metal batt...
Liquid metal batteries (LMBs) are attractive energy storage device for large-scale energy storage sy...
Grid-scale energy storage systems (ESSs) that can connect to sustainable energy resources have recei...