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Self-doped graphite nanobelts

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Author(s):
Camargo, Bruno Cury ; El-Kerdi, Banan ; Alaferdov, Andrei ; Zuri, Shahar ; Birowska, Magdalena ; Escoffier, Walter
Total Authors: 6
Document type: Journal article
Source: Carbon; v. 207, p. 5-pg., 2023-03-15.
Abstract

We report that mechanical deformation of graphite with cavity shock waves introduces a new group of charge carriers, with both effective mass and native concentration one order of magnitude above those found in the pristine material. Their nature, however, remains quasi-2D. Our results show that defects introduced during mechanical exfoliation have the potential to unlock oscillatory behavior above 50 T in graphite, thus providing a new probe for field-induced electronic phase transitions in the material. (AU)

FAPESP's process: 17/10581-1 - Emergent phenomena in reduced dimension systems
Grantee:Pascoal Jose Giglio Pagliuso
Support Opportunities: Special Projects
FAPESP's process: 18/21623-0 - Majorana fermions in topological non-trivial materials
Grantee:Andrei Alaferdov
Support Opportunities: Scholarships in Brazil - Post-Doctoral