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Research Article

Stratigraphic analysis of intercalated graphite electrodes in aqueous inorganic acid solutions

Stefania De Rosa1,2Paolo Branchini1Valentina Spampinato3Alexis Franquet3Rossella Yivlialin4Lamberto Duò5Gianlorenzo Bussetti5Luca Tortora1,6( )
LASR3 Surface Analysis LaboratoryINFN Roma Tre, via della Vasca Navale 8400146 RomeItaly
Department of Mathematics and PhysicsRoma Tre University, via della Vasca Navale 8400146 RomeItaly
Imec, Kapeldreef 75B-3001 LeuvenBelgium
Helmholtz-Zentrum Berlin für Materialen und Energie GmbHInstitute for Solar Fuels (EE-IF), Hahn-Meitner-Platz 1D-14109 BerlinGermany
Department of Physics, Politecnico di MilanoPiazza Leonardo da Vinci 32I-20133 MilanoItaly
Department of Science, Roma Tre Universityvia della Vasca Navale 8400146 RomeItaly
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Abstract

A detailed stratigraphic investigation of the intercalation mechanism when graphite electrodes are immersed inside diluted perchloric (HClO4) and sulfuric (H2SO4) electrolytes is obtained by comparing results when graphite crystals are simply immersed in the same acid solutions. By combining time-of-flight secondary ion mass spectrometry (ToF-SIMS) and in-situ atomic force microscopy (AFM), we provide a picture of the chemical species involved in the intercalation reaction. The depth intensity profile of the ion signals along the electrode crystal clearly shows a more complex mechanism for the intercalation process, where the local morphology of the basal plane plays a crucial role. Solvated anions are mostly located within the first tens of nanometers of graphite, but electrolytes also diffuse inside the buried layers for hundreds of nanometers, the latter process is also aided by the presence of mesoscopic crystal defects. Residual material from the electrolyte solution was found localized in well-defined circular spots, which represent preferential interaction areas. Interestingly, blister-like micro-structures similar to those observed on the highly oriented pyrolytic graphite (HOPG) surface were found in the buried layers, confirming the equivalence of the chemical condition on the graphite surface and in the underneath layers.

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Nano Research
Pages 1120-1127

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Cite this article:
De Rosa S, Branchini P, Spampinato V, et al. Stratigraphic analysis of intercalated graphite electrodes in aqueous inorganic acid solutions. Nano Research, 2022, 15(2): 1120-1127. https://doi.org/10.1007/s12274-021-3614-6
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Received: 24 March 2021
Revised: 11 May 2021
Accepted: 20 May 2021
Published: 19 July 2021
© The Author(s) 2021