Anomalous c-axis shifts and symmetry enhancement in highly oriented pyrolytic graphite at the magic angle

Observation of superconductivity in twisted-bilayer-graphene and highly-oriented-pyrolytic-graphite (HOPG) for certain magic-angles-of-rotation has recently attracted an important attention. Unusual temperature-(T)-induced-shifts in the graphitic c-axis have also been reported in HOPG in conditions...

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Veröffentlicht in:Carbon (New York) 2019-09, Vol.150, p.27-31
Hauptverfasser: Boi, Filippo S., Liu, Mengjiao, Xia, JiaChen, Odunmbaku, Omololu, Taallah, Ayoub, Wen, Jiqiu
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container_issue
container_start_page 27
container_title Carbon (New York)
container_volume 150
creator Boi, Filippo S.
Liu, Mengjiao
Xia, JiaChen
Odunmbaku, Omololu
Taallah, Ayoub
Wen, Jiqiu
description Observation of superconductivity in twisted-bilayer-graphene and highly-oriented-pyrolytic-graphite (HOPG) for certain magic-angles-of-rotation has recently attracted an important attention. Unusual temperature-(T)-induced-shifts in the graphitic c-axis have also been reported in HOPG in conditions of θmisfit ∼ 1° (first-magic-angle). We report a novel investigation of HOPGs with θmisfit of 0.5°, 0.8°, 1.5°, ≫ 1.5° and of water-treated-turbostratic-graphite in the T-range from 298.15 to 673.15K. Presence of magic angles of rotations corresponding to the reported θmisfit values is demonstrated by repeated HRTEM and Moiré pattern analyses of HOPG lamellae extracted from individual samples with scotch tape methods. Interestingly in our measurements the c-axis-shift is found to depend strongly on the misfit-angle, with the highest-values of 0.00428 and 0.00426 nm in proximity of the first-magic-angle (θmisfit ∼ 0.8° and ∼0.5°). Two diffraction-peaks present at ∼23.5° and ∼48.5° 2θ (detector angle, in typical Bragg- Brentano configuration) for θmisfit ∼1° are also found to vanish for θmisfit ≫ 1.5°. These findings imply existence of additional symmetry elements at the magic angle, which are not present in the standard space group notation used for structural characterization of graphite (P63/mmc). [Display omitted]
doi_str_mv 10.1016/j.carbon.2019.05.003
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Unusual temperature-(T)-induced-shifts in the graphitic c-axis have also been reported in HOPG in conditions of θmisfit ∼ 1° (first-magic-angle). We report a novel investigation of HOPGs with θmisfit of 0.5°, 0.8°, 1.5°, ≫ 1.5° and of water-treated-turbostratic-graphite in the T-range from 298.15 to 673.15K. Presence of magic angles of rotations corresponding to the reported θmisfit values is demonstrated by repeated HRTEM and Moiré pattern analyses of HOPG lamellae extracted from individual samples with scotch tape methods. Interestingly in our measurements the c-axis-shift is found to depend strongly on the misfit-angle, with the highest-values of 0.00428 and 0.00426 nm in proximity of the first-magic-angle (θmisfit ∼ 0.8° and ∼0.5°). Two diffraction-peaks present at ∼23.5° and ∼48.5° 2θ (detector angle, in typical Bragg- Brentano configuration) for θmisfit ∼1° are also found to vanish for θmisfit ≫ 1.5°. These findings imply existence of additional symmetry elements at the magic angle, which are not present in the standard space group notation used for structural characterization of graphite (P63/mmc). 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Unusual temperature-(T)-induced-shifts in the graphitic c-axis have also been reported in HOPG in conditions of θmisfit ∼ 1° (first-magic-angle). We report a novel investigation of HOPGs with θmisfit of 0.5°, 0.8°, 1.5°, ≫ 1.5° and of water-treated-turbostratic-graphite in the T-range from 298.15 to 673.15K. Presence of magic angles of rotations corresponding to the reported θmisfit values is demonstrated by repeated HRTEM and Moiré pattern analyses of HOPG lamellae extracted from individual samples with scotch tape methods. Interestingly in our measurements the c-axis-shift is found to depend strongly on the misfit-angle, with the highest-values of 0.00428 and 0.00426 nm in proximity of the first-magic-angle (θmisfit ∼ 0.8° and ∼0.5°). Two diffraction-peaks present at ∼23.5° and ∼48.5° 2θ (detector angle, in typical Bragg- Brentano configuration) for θmisfit ∼1° are also found to vanish for θmisfit ≫ 1.5°. These findings imply existence of additional symmetry elements at the magic angle, which are not present in the standard space group notation used for structural characterization of graphite (P63/mmc). 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Unusual temperature-(T)-induced-shifts in the graphitic c-axis have also been reported in HOPG in conditions of θmisfit ∼ 1° (first-magic-angle). We report a novel investigation of HOPGs with θmisfit of 0.5°, 0.8°, 1.5°, ≫ 1.5° and of water-treated-turbostratic-graphite in the T-range from 298.15 to 673.15K. Presence of magic angles of rotations corresponding to the reported θmisfit values is demonstrated by repeated HRTEM and Moiré pattern analyses of HOPG lamellae extracted from individual samples with scotch tape methods. Interestingly in our measurements the c-axis-shift is found to depend strongly on the misfit-angle, with the highest-values of 0.00428 and 0.00426 nm in proximity of the first-magic-angle (θmisfit ∼ 0.8° and ∼0.5°). Two diffraction-peaks present at ∼23.5° and ∼48.5° 2θ (detector angle, in typical Bragg- Brentano configuration) for θmisfit ∼1° are also found to vanish for θmisfit ≫ 1.5°. 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source ScienceDirect Journals (5 years ago - present)
subjects Bilayers
Diffraction
Graphene
Graphite
Measurement methods
Pattern analysis
Pyrolytic graphite
Structural analysis
Superconductivity
Symmetry
title Anomalous c-axis shifts and symmetry enhancement in highly oriented pyrolytic graphite at the magic angle
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