Enhanced percolative spin-glass-like behavior in oxygen-rich highly oriented pyrolytic graphite with anomalous non-hexagonal superlattices and doubled electron diffraction patterns
The recent observations of superconductive-signals in grafoil and highly-oriented-pyrolytic-graphite (HOPG) have evidenced existence of unknown-defects responsible of electron-correlation-phenomena. Existence of anomalous-super-periodicities and doubled-diffraction-patterns has been also reported. H...
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doaj-3c17788601e04e22b312867e2ecaf2da2021-06-21T04:26:21ZengElsevierCarbon Trends2667-05692021-01-012100022Enhanced percolative spin-glass-like behavior in oxygen-rich highly oriented pyrolytic graphite with anomalous non-hexagonal superlattices and doubled electron diffraction patternsFilippo S. Boi0Yi He1Shuai Gao2Li Lei3Jian Guo4Ayoub Taallah5Salvatore Grasso6Shanling Wang7College of Physics, Sichuan University, Chengdu, China; Corresponding authors.Analytical and Testing Center, Sichuan University, Chengdu, ChinaCollege of Physics, Sichuan University, Chengdu, ChinaInstitute of Atomic and Molecular Physics, Sichuan University, Chengdu, ChinaDepartment of Chemistry, University College London, London WC1H 0AJ, UKCollege of Physics, Sichuan University, Chengdu, ChinaSchool of Materials Science and Engineering, Southwest Jiaotong University, Chengdu, ChinaAnalytical and Testing Center, Sichuan University, Chengdu, China; Corresponding authors.The recent observations of superconductive-signals in grafoil and highly-oriented-pyrolytic-graphite (HOPG) have evidenced existence of unknown-defects responsible of electron-correlation-phenomena. Existence of anomalous-super-periodicities and doubled-diffraction-patterns has been also reported. Here we present an in-depth investigation of the structural-magnetic relationship of HOPG samples with unusual oxygen rich characteristics. By employing high-resolution-transmission-electron-microscopy (HRTEM) and selective-area-electron-diffraction (SAED) we demonstrate the appearance of non-hexagonal and hexagonal Moiré super-periodicities, with anomalous doubled electron diffraction patterns, in μm-thin lamellae exfoliated from HOPG. The hexagonal Moiré superlattices (D ~ 5.0 nm corresponding to θrot ~ 2.8o) highlight the presence of rotational misorientations between the graphitic layers and complex interfaces. Further, graphene oxide phases in direct interfacial contact with the graphitic layers were identified. Raman-spectroscopy evidenced D, D’ and G-bands compatible with the presence of sp3- and vacancy-rich configurations in proximity of the HOPG edges. Superconducting-quantum-interference-device (SQUID) revealed an enhanced spin-glass-like ferromagnetic behaviour. This observation was further confirmed by additional magnetometry measurements performed on graphite oxide. A diamagnetic background was found in all the analysed samples, while no superconductive signals were detected.http://www.sciencedirect.com/science/article/pii/S2667056920300225HOPGExfoliationNon hexagonal superlatticeHexagonal superlatticeFerromagnetismSpin-glass-like behaviour |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Filippo S. Boi Yi He Shuai Gao Li Lei Jian Guo Ayoub Taallah Salvatore Grasso Shanling Wang |
spellingShingle |
Filippo S. Boi Yi He Shuai Gao Li Lei Jian Guo Ayoub Taallah Salvatore Grasso Shanling Wang Enhanced percolative spin-glass-like behavior in oxygen-rich highly oriented pyrolytic graphite with anomalous non-hexagonal superlattices and doubled electron diffraction patterns Carbon Trends HOPG Exfoliation Non hexagonal superlattice Hexagonal superlattice Ferromagnetism Spin-glass-like behaviour |
author_facet |
Filippo S. Boi Yi He Shuai Gao Li Lei Jian Guo Ayoub Taallah Salvatore Grasso Shanling Wang |
author_sort |
Filippo S. Boi |
title |
Enhanced percolative spin-glass-like behavior in oxygen-rich highly oriented pyrolytic graphite with anomalous non-hexagonal superlattices and doubled electron diffraction patterns |
title_short |
Enhanced percolative spin-glass-like behavior in oxygen-rich highly oriented pyrolytic graphite with anomalous non-hexagonal superlattices and doubled electron diffraction patterns |
title_full |
Enhanced percolative spin-glass-like behavior in oxygen-rich highly oriented pyrolytic graphite with anomalous non-hexagonal superlattices and doubled electron diffraction patterns |
title_fullStr |
Enhanced percolative spin-glass-like behavior in oxygen-rich highly oriented pyrolytic graphite with anomalous non-hexagonal superlattices and doubled electron diffraction patterns |
title_full_unstemmed |
Enhanced percolative spin-glass-like behavior in oxygen-rich highly oriented pyrolytic graphite with anomalous non-hexagonal superlattices and doubled electron diffraction patterns |
title_sort |
enhanced percolative spin-glass-like behavior in oxygen-rich highly oriented pyrolytic graphite with anomalous non-hexagonal superlattices and doubled electron diffraction patterns |
publisher |
Elsevier |
series |
Carbon Trends |
issn |
2667-0569 |
publishDate |
2021-01-01 |
description |
The recent observations of superconductive-signals in grafoil and highly-oriented-pyrolytic-graphite (HOPG) have evidenced existence of unknown-defects responsible of electron-correlation-phenomena. Existence of anomalous-super-periodicities and doubled-diffraction-patterns has been also reported. Here we present an in-depth investigation of the structural-magnetic relationship of HOPG samples with unusual oxygen rich characteristics. By employing high-resolution-transmission-electron-microscopy (HRTEM) and selective-area-electron-diffraction (SAED) we demonstrate the appearance of non-hexagonal and hexagonal Moiré super-periodicities, with anomalous doubled electron diffraction patterns, in μm-thin lamellae exfoliated from HOPG. The hexagonal Moiré superlattices (D ~ 5.0 nm corresponding to θrot ~ 2.8o) highlight the presence of rotational misorientations between the graphitic layers and complex interfaces. Further, graphene oxide phases in direct interfacial contact with the graphitic layers were identified. Raman-spectroscopy evidenced D, D’ and G-bands compatible with the presence of sp3- and vacancy-rich configurations in proximity of the HOPG edges. Superconducting-quantum-interference-device (SQUID) revealed an enhanced spin-glass-like ferromagnetic behaviour. This observation was further confirmed by additional magnetometry measurements performed on graphite oxide. A diamagnetic background was found in all the analysed samples, while no superconductive signals were detected. |
topic |
HOPG Exfoliation Non hexagonal superlattice Hexagonal superlattice Ferromagnetism Spin-glass-like behaviour |
url |
http://www.sciencedirect.com/science/article/pii/S2667056920300225 |
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