Development of calcium metal batteries has been historically frustrated by a lack of electrolytes capable of supporting reversible calcium electrodeposition. In this paper, we report the study of an electrolyte consisting of Ca(BH4)2 in tetrahydrofuran (THF) to gain important insight into the role of the liquid solvation environment in facilitating the reversible electrodeposition of this highly reactive, divalent metal. Through interrogation of the Ca2+ solvation environment and comparison with Mg2+ analogs, we show that an ability to reversibly electrodeposit metal at reasonable rates is strongly regulated by dication charge density and polarizability. Our results indicate that the greater polarizability of Ca2+ over Mg2+ confers greater ...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
International audienceAbundance of Ca, its low redox potential and high specific capacity make Ca me...
The development of a rechargeable battery technology using light electropositive metal anodes would ...
Development of calcium metal batteries has been historically frustrated by a lack of electrolytes ca...
Accessing the energy density and sustainability of calcium metal batteries requires mastering revers...
Multivalent rechargeable metal batteries offer a safer, more sustainable, and higher energy density ...
There is considerable interest in multivalent cation batteries, such as those based on Mg, Ca or Al1...
Multivalent batteries represent an important beyond Li-ion energy storage concept. The prospect of c...
Divalent cation based batteries are being considered as potential high energy density storage device...
The development of high energy density battery technologies based on divalent metals as the negative...
Divalent-cation-based batteries are being considered as potential high energy density storage device...
Alkali metals, such as lithium and sodium, have been expected to be used for rechargeable metal-anod...
Rechargeable calcium (Ca) batteries have the prospect of highenergy and low-cost. However, the devel...
There is growing interest in the rational design of electrolytes for multivalent-ion batteries by tu...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, February,...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
International audienceAbundance of Ca, its low redox potential and high specific capacity make Ca me...
The development of a rechargeable battery technology using light electropositive metal anodes would ...
Development of calcium metal batteries has been historically frustrated by a lack of electrolytes ca...
Accessing the energy density and sustainability of calcium metal batteries requires mastering revers...
Multivalent rechargeable metal batteries offer a safer, more sustainable, and higher energy density ...
There is considerable interest in multivalent cation batteries, such as those based on Mg, Ca or Al1...
Multivalent batteries represent an important beyond Li-ion energy storage concept. The prospect of c...
Divalent cation based batteries are being considered as potential high energy density storage device...
The development of high energy density battery technologies based on divalent metals as the negative...
Divalent-cation-based batteries are being considered as potential high energy density storage device...
Alkali metals, such as lithium and sodium, have been expected to be used for rechargeable metal-anod...
Rechargeable calcium (Ca) batteries have the prospect of highenergy and low-cost. However, the devel...
There is growing interest in the rational design of electrolytes for multivalent-ion batteries by tu...
Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, February,...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
International audienceAbundance of Ca, its low redox potential and high specific capacity make Ca me...
The development of a rechargeable battery technology using light electropositive metal anodes would ...