Batteries are an attractive option for grid-scale energy storage applications because of their small footprint and flexible siting. A high-temperature (700 °C) magnesium–antimony (Mg||Sb) liquid metal battery comprising a negative electrode of Mg, a molten salt electrolyte (MgCl<sub>2</sub>–KCl–NaCl), and a positive electrode of Sb is proposed and characterized. Because of the immiscibility of the contiguous salt and metal phases, they stratify by density into three distinct layers. Cells were cycled at rates ranging from 50 to 200 mA/cm<sup>2</sup> and demonstrated up to 69% DC–DC energy efficiency. The self-segregating nature of the battery components and the use of low-cost materials results in a promising technology for stationary energ...
This work presents the performance and polarization studies of a magnesium–antimony liquid metal bat...
As portable electronics and electric vehicles become a more integral part of everyday life, recharge...
Magnesium batteries are alternatives to the use of lithium ion and nickel metal hydride secondary ba...
International audienceRechargeable magnesium batteries are gaining a lot of interest due to promisin...
Technological evolution puts up an ever-growing demand on energy storage – challenging today’s tech...
Rechargeable magnesium ion batteries, which possess the advantages of low cost, high safety, high vo...
Lithium-ion batteries (LIBs) have gained significant market share in the field of consumer electroni...
Demands in energy storage require a significant improvement in the energy density of battery system...
International audienceIn recent decades, rechargeable Mg batteries (RMBs) technolo-gies have attract...
Hybrid magnesium–lithium-ion batteries (MLIBs) featuring dendrite-free deposition of Mg anode and Li...
We discuss the latest developments in alternative battery systems based on sodium, magnesium, zinc a...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering,...
Demands in energy storage require a significant improvement in the energy density of battery systems...
Our world is in peril! Gaia the spirit of the Earth can no long stand the terrible destruction plagu...
This work presents the performance and polarization studies of a magnesium–antimony liquid metal bat...
As portable electronics and electric vehicles become a more integral part of everyday life, recharge...
Magnesium batteries are alternatives to the use of lithium ion and nickel metal hydride secondary ba...
International audienceRechargeable magnesium batteries are gaining a lot of interest due to promisin...
Technological evolution puts up an ever-growing demand on energy storage – challenging today’s tech...
Rechargeable magnesium ion batteries, which possess the advantages of low cost, high safety, high vo...
Lithium-ion batteries (LIBs) have gained significant market share in the field of consumer electroni...
Demands in energy storage require a significant improvement in the energy density of battery system...
International audienceIn recent decades, rechargeable Mg batteries (RMBs) technolo-gies have attract...
Hybrid magnesium–lithium-ion batteries (MLIBs) featuring dendrite-free deposition of Mg anode and Li...
We discuss the latest developments in alternative battery systems based on sodium, magnesium, zinc a...
Thesis (M. Eng.)--Massachusetts Institute of Technology, Dept. of Materials Science and Engineering,...
Demands in energy storage require a significant improvement in the energy density of battery systems...
Our world is in peril! Gaia the spirit of the Earth can no long stand the terrible destruction plagu...
This work presents the performance and polarization studies of a magnesium–antimony liquid metal bat...
As portable electronics and electric vehicles become a more integral part of everyday life, recharge...
Magnesium batteries are alternatives to the use of lithium ion and nickel metal hydride secondary ba...