Thesis: S.M., Massachusetts Institute of Technology, Department of Mechanical Engineering, February, 2021Cataloged from the official PDF version of thesis.Includes bibliographical references (pages 46-49).Fundamental research and practical assembly of rechargeable calcium (Ca)-based batteries will benefit from the ability to use Ca metal anodes to provide a sufficient Ca²⁺ reservoir for full cell electrochemistry. When Ca metal comes in contact with an organic electrolyte, a native solid electrolyte interphase (SEI) forms which dramatically alters the electrode, and in some instances fully passivates it. Considering that Ca deposition and dissolution is widely believed to be a surface-film-controlled process, understanding the role of the i...
The development of a rechargeable battery technology using light electropositive metal anodes would ...
Accessing the energy density and sustainability of calcium metal batteries requires mastering revers...
International audienceAbundance of Ca, its low redox potential and high specific capacity make Ca me...
© 2020 The Author(s). Published on behalf of The Electrochemical Society by IOP Publishing Limited. ...
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 cation rechargeable batteries, including those based on Ca, Mg, Al, etc., have attracted...
Multivalent cation rechargeable batteries, including those based on Ca, Mg, Al, etc., have attracted...
This Review flows from past attempts to develop a (rechargeable) battery technology based on Ca via ...
With significant improvements in electrical energy storage, researchers could change the way energy ...
The development of high energy density battery technologies based on divalent metals as the negative...
Development of calcium metal batteries has been historically frustrated by a lack of electrolytes ca...
Rechargeable calcium (Ca) batteries have the prospect of highenergy and low-cost. However, the devel...
This article reviews the progress in the development of a possible battery technology based on calci...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
The development of a rechargeable battery technology using light electropositive metal anodes would ...
Accessing the energy density and sustainability of calcium metal batteries requires mastering revers...
International audienceAbundance of Ca, its low redox potential and high specific capacity make Ca me...
© 2020 The Author(s). Published on behalf of The Electrochemical Society by IOP Publishing Limited. ...
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 cation rechargeable batteries, including those based on Ca, Mg, Al, etc., have attracted...
Multivalent cation rechargeable batteries, including those based on Ca, Mg, Al, etc., have attracted...
This Review flows from past attempts to develop a (rechargeable) battery technology based on Ca via ...
With significant improvements in electrical energy storage, researchers could change the way energy ...
The development of high energy density battery technologies based on divalent metals as the negative...
Development of calcium metal batteries has been historically frustrated by a lack of electrolytes ca...
Rechargeable calcium (Ca) batteries have the prospect of highenergy and low-cost. However, the devel...
This article reviews the progress in the development of a possible battery technology based on calci...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Materials Science and Engineeri...
The development of a rechargeable battery technology using light electropositive metal anodes would ...
Accessing the energy density and sustainability of calcium metal batteries requires mastering revers...
International audienceAbundance of Ca, its low redox potential and high specific capacity make Ca me...