Fundamental features of AlCl 4 - -/AlCl 4 -graphite intercalation compounds of aluminum-ion-based battery cathodes

Up to now, many guest atoms/molecules/ions have been successfully synthesized into graphite to form various compounds. For example, alkali-atom graphite intercalation compounds are verified to reveal stage-n structures, including LiC and LiM [M = K, Rb, and Cs; = 1, 2, 3; 4]. On the other side, AlCl...

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Bibliographic Details
Published inRSC advances Vol. 13; no. 1; pp. 281 - 291
Main Authors Li, Wei-Bang, Lin, Shih-Yang, Lin, Ming-Fa, Khuong Dien, Vo, Lin, Kuang-I
Format Journal Article
LanguageEnglish
Published England 19.12.2022
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Summary:Up to now, many guest atoms/molecules/ions have been successfully synthesized into graphite to form various compounds. For example, alkali-atom graphite intercalation compounds are verified to reveal stage-n structures, including LiC and LiM [M = K, Rb, and Cs; = 1, 2, 3; 4]. On the other side, AlCl -ion/AlCl -molecule compounds are found to show stage-4 and stage-3 structures at room and lower temperatures, respectively. Stage-1 and stage-2 configurations, with the higher intercalant concentrations, cannot be synthesized in experimental laboratories. This might arise from the fact that it is quite difficult to build periodical arrangements along the longitudinal and transverse directions simultaneously for large ions or molecules. Our work is mainly focused on stage-1 and stage-2 systems in terms of geometric and electronic properties. The critical features, being associated with the atom-dominated energy spectra and wave functions within the specific energy ranges, the active multi-orbital hybridization in distinct chemical bonds, and atom- & orbital-decomposed van Hove singularities, will be thoroughly clarified by the delicate simulations and analyses.
ISSN:2046-2069
2046-2069
DOI:10.1039/D2RA06079E