An aluminum - ionic liquid interface sustaining a durable Al-air battery
Created by W.Langdon from
gp-bibliography.bib Revision:1.8051
- @Article{GELMAN:2017:JPS,
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author = "Danny Gelman and Boris Shvartsev and
Itamar Wallwater and Shahaf Kozokaro and Vicky Fidelsky and Adi Sagy and
Alon Oz and Sioma Baltianski and Yoed Tsur and
Yair Ein-Eli",
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title = "An aluminum - ionic liquid interface sustaining a
durable Al-air battery",
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journal = "Journal of Power Sources",
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volume = "364",
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pages = "110--120",
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year = "2017",
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keywords = "genetic algorithms, genetic programming, Aluminum,
Metal-air battery, Ionic liquid, Interface,
Oligofluorohydrogenate",
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ISSN = "0378-7753",
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DOI = "doi:10.1016/j.jpowsour.2017.08.014",
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URL = "http://www.sciencedirect.com/science/article/pii/S0378775317310388",
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abstract = "A thorough study of a unique aluminum (Al)-air battery
using a pure Al anode, an air cathode, and hydrophilic
room temperature ionic liquid electrolyte
1-ethyl-3-methylimidazolium oligofluorohydrogenate
[EMIm(HF)2.3F] is reported. The effects of various
operation conditions, both at open circuit potential
and under discharge modes, on the battery components
were discussed. A variety of techniques were used to
investigate and study the interfaces and processes
involved, including electrochemical studies, electron
microscopy, spectroscopy and diffraction. As a result
of this intensive study, the upon-operation voltage
drop (dip) obstacle, occurring in the initial stages of
the Al-air battery discharge, has been resolved. In
addition, the interaction of the Al anode with
oligofluorohydrogenate electrolyte forms an Al-O-F
layer on the Al surface, which allows both activation
and low corrosion rates of the Al anode. The evolution
of this layer has been studied via impedance
spectroscopy genetic programming enabling a unique
model of the Al-air battery",
- }
Genetic Programming entries for
Danny Gelman
Boris Shvartsev
Itamar Wallwater
Shahaf Kozokaro
Vicky Fidelsky
Adi Sagy
Alon Oz
Sioma Baltianski
Yoed Tsur
Yair Ein-Eli
Citations