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pro vyhledávání: '"Rose Y. Lee"'
Autor:
Adam Maraschky, Stephen J. Percival, Rose Y. Lee, Melissa L Meyerson, Amanda S Peretti, Erik D. Spoerke, Leo J Small
Publikováno v:
Journal of The Electrochemical Society.
Iodide redox reactions in molten NaI/AlCl3 are shown to generate surface-blocking films, which may limit the useful cycling rates and energy densities of molten sodium batteries below 150°C. An experimental investigation of electrode interfacial sta
Autor:
Adam M. Maraschky, Rose Y. Lee, Stephen J. Percival, Martha M. Gross, Amanda S. Peretti, Erik D. Spoerke, Leo J. Small
Publikováno v:
ECS Meeting Abstracts. :497-497
Low-cost, long-duration energy storage is a vital resource needed for a robust electric grid powered by renewables. Low-temperature (3, AlBr3, and GaCl3. To better understand the catholyte properties during cycling, we have performed electrochemical
Autor:
Rose Y. Lee, Stephen J. Percival, Martha M. Gross, Erik Spoerke, Amanda Peretti, Leo J. Small
Publikováno v:
Proposed for presentation at the MRS Spring/Fall Meeting held November 27 - December 4, 2020 in online..
Publikováno v:
Journal of The Electrochemical Society. 168:126511
The oxidation of iodide in NaI-AlBr3, NaI-AlCl3, and NaI-GaCl3 molten salts was analyzed using simulation software to extract relevant kinetic parameters. The experimental oxidation potentials were ordered AlCl3 < AlBr3 < GaCl3, with higher oxidation
Autor:
Rose Y. Lee, Martha M. Gross, Erik David Spoerke, Amanda Peretti, Stephen J. Percival, Leo J. Small
Publikováno v:
Cell Reports Physical Science. 2:100489
Summary Despite its promise as a safe, reliable system for grid-scale electrical energy storage, traditional molten sodium (Na) battery deployment remains limited by cost-inflating high-temperature operation. Here, we describe a high-performance sodi
Autor:
Rose Y. Lee, Martha M. Gross, Stephen J. Percival, Leo J. Small, Erik David Spoerke, Amanda Peretti
Publikováno v:
Journal of The Electrochemical Society. 168:036510
NaI-AlBr3 is a very appealing low melting temperature (100 °C, lower NaI concentrations had two partially miscible liquid phases, while higher NaI concentrations had solid particles. Considering the fully molten regime, electrical conductivities wer