2016
DOI: 10.1016/j.electacta.2016.05.063
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Electrochemically active species in aluminum electrodeposition baths of AlCl3/glyme solutions

Abstract: Electrochemically active species in aluminum (Al) electrodeposition baths using AlCl3 and less volatile solvents i.e. glymes were investigated. Raman spectroscopy revealed that all the glyme baths contained AlCl4-anions and Al-Cl-glyme cations as ionic species. Room temperature conductivities were as high as the order of 10-3 S cm-1 for the diglyme (G2), triglyme (G3) and tetraglyme (G4) baths, whereas that for the butyl diglyme (butylG2) bath was only 10-4 S cm-1 due to a lower concentration of ionic species.… Show more

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Cited by 58 publications
(60 citation statements)
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“…[31,38,50] Experimental Section Experimental details, 1D and 2D NMR, and vibrational spectra of all mixtures, and crystallographic detailsh ave been deposited in the SupportingI nformation. The first observation indicates that the use of AlBr 3 for the synthesis of novel mixtures/solutions could be beneficial, as more weakly coordinatingl igands/solvent molecules can be used for the formation of [Al(L) 6 ] 3 + .T his could be an advantage for the deposition of aluminum from this cation, as strongly coordinating ligandsp reventt he electrodeposition of aluminumfrom cationic aluminum complexes.…”
Section: Overview Of Spectroscopic Data and Constituent Speciesmentioning
confidence: 99%
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“…[31,38,50] Experimental Section Experimental details, 1D and 2D NMR, and vibrational spectra of all mixtures, and crystallographic detailsh ave been deposited in the SupportingI nformation. The first observation indicates that the use of AlBr 3 for the synthesis of novel mixtures/solutions could be beneficial, as more weakly coordinatingl igands/solvent molecules can be used for the formation of [Al(L) 6 ] 3 + .T his could be an advantage for the deposition of aluminum from this cation, as strongly coordinating ligandsp reventt he electrodeposition of aluminumfrom cationic aluminum complexes.…”
Section: Overview Of Spectroscopic Data and Constituent Speciesmentioning
confidence: 99%
“…This discrepancy is explained by the presence of the active species[ Al 2 Cl 7 ] À at 70 8C and its absence at room temperature, whichc ould be proven by 27 Al NMR spectroscopy. [37,38] As triglyme (G3) has four ether oxygen atoms, no second donor molecule is neededt of ormah exacoordinated complex [AlCl 2 (G3)] + .T he ligand is harder to dissolve due to the better chelating effect, resulting in the formation of an electrochemically inactive monocation.A ll other deposition experiments were performedw ith Lewis acidic mixtures, and the proposed active species are either cationic or the anion [Al 2 Cl 7 ] À .T he preceding discussion suggests that the exact mechanism and the influence of the ligand on the deposition of aluminumf rom AlCl 3 -based mixtures is still open to debate. of aluminum is six, as the active species.…”
Section: Introductionmentioning
confidence: 99%
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“…Der zweite Elektrolyttyp, das Eutektikum aus AlCl 3 /organischem Lösungsmittel, wird durch Auflösung von wasserfreiem AlCl 3 in Amid‐, Sulfon‐ oder Glyme‐basierten Lösungsmitteln in einer inerten Atmosphäre hergestellt . Diese Elektrolyte sollen eine kostengünstige, weniger korrosive Alternative zu den AlCl 3 /Chlorid‐basierten ionischen Flüssigkeiten sein.…”
Section: Alcl3‐basierte Elektrolyte Für Aluminiumbatterienunclassified
“…Ein anderes Eutektikum aus AlCl 3 /organischem Lösungsmittel mit ähnlicher Koordinations‐ oder Lösungsfunktion wie der AlCl 3 /Amid‐Elektrolyt ist der AlCl 3 /Diglyme‐Elektrolyt, der ebenfalls reversible Al‐Abscheidung und Auflösung erzeugen kann . Die aktive Spezies in diesem Elektrolyten soll ausschließlich das Sechs‐O/Cl‐koordinierte AlCl 2 (Diglyme) 2 + ‐Kation sein, welches mit dem inaktiven AlCl 4 − ‐Anion gepaart ist.…”
Section: Alcl3‐basierte Elektrolyte Für Aluminiumbatterienunclassified