Herein we report a novel study on the reaction mechanism of non-aqueous aluminum/graphite cell chemistry employing 1-ethyl-3-methylimidazolium chloride: aluminum trichloride (EMIMCl:AlCl3) as the electrolyte. This work highlights new insights into the reversibility of the anion intercalation chemistry besides confirming its outstanding cycle life exceeding 2000 cycles, corresponding to more than 5 months of cycling test. The reaction mechanism, involving the intercalation of AlCl4- in graphite, has been fully characterized by means of ex situ X-ray diffraction (XRD), X-ray photoelectron spectroscopy (XPS), X-ray absorption near edge structure spectroscopy (XANES) and small-angle X-ray scattering (SAXS), evidencing the accumulation of anioni...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
In this work we propose a full operando characterization of Al/EMIMCl:AlCl3/Graphite system that sh...
Recently, a novel rechargeable Al ion battery (AIB) with high performance has been developed. Owing ...
Herein we report a novel study on the reaction mechanism of non-aqueous aluminum/graphite cell chemi...
Herein we report a novel study on the reaction mechanism of non-aqueous aluminum/graphite cell chemi...
Herein we report a novel study on the reaction mechanism of non-aqueous aluminum/graphite cell chemi...
Herein we report a novel study on the reaction mechanism of non aqueous aluminum graphite cell chem...
Herein we report a novel study on the reaction mechanism of non aqueous aluminum graphite cell chem...
Herein we report a novel study on the reaction mechanism of non aqueous aluminum graphite cell chem...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
Using first-principles calculations and molecular dynamics simulation, we study the working mechanis...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
In this work we propose a full operando characterization of Al/EMIMCl:AlCl3/Graphite system that sh...
Recently, a novel rechargeable Al ion battery (AIB) with high performance has been developed. Owing ...
Herein we report a novel study on the reaction mechanism of non-aqueous aluminum/graphite cell chemi...
Herein we report a novel study on the reaction mechanism of non-aqueous aluminum/graphite cell chemi...
Herein we report a novel study on the reaction mechanism of non-aqueous aluminum/graphite cell chemi...
Herein we report a novel study on the reaction mechanism of non aqueous aluminum graphite cell chem...
Herein we report a novel study on the reaction mechanism of non aqueous aluminum graphite cell chem...
Herein we report a novel study on the reaction mechanism of non aqueous aluminum graphite cell chem...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
Using first-principles calculations and molecular dynamics simulation, we study the working mechanis...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
Herein we report on a detailed investigation of the irreversible capacity in the first cycle of pyro...
In this work we propose a full operando characterization of Al/EMIMCl:AlCl3/Graphite system that sh...
Recently, a novel rechargeable Al ion battery (AIB) with high performance has been developed. Owing ...