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Titlebook: Basic Physics of Functionalized Graphite; Pablo D. Esquinazi Book 2016 Springer International Publishing Switzerland 2016 Applications of

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期刊全称Basic Physics of Functionalized Graphite
影响因子2023Pablo D. Esquinazi
视频video
发行地址Presents newly discovered phenomena of ferromagnetism order and superconductivity.Covers the application potential of functionalized graphite.Shows various similar properties of graphite and graphene
学科分类Springer Series in Materials Science
图书封面Titlebook: Basic Physics of Functionalized Graphite;  Pablo D. Esquinazi Book 2016 Springer International Publishing Switzerland 2016 Applications of
影响因子This book summarizes the basic physics of graphite and newly discovered phenomena in this material. The book contains the knowledge needed to understand novel properties of functionalized graphite demonstrating the occurrence of remarkable phenomena in disordered graphite and graphite-based heterostructures. It also discusses applications of thin graphitic samples in future electronics. Graphite consists of a stack of nearly decoupled two-dimensional graphene planes. Because of the low dimensionality and the presence of Dirac fermions, much of graphite physics resembles that of graphene. On the other hand, the multi-layered nature of the graphite structure together with structural and/or chemical disorder are responsible for phenomena that are not observed yet in graphene, such as ferromagnetic order and superconductivity. Each chapter was written by one or more experts in the field whose contributions were relevant in the (re)discovery of (un)known phenomena in graphite. The book is intended as reference for beginners and experts in the field, introducing them to many aspects of the new physics of graphite, with a fresh overview of recently found phenomena and the theoretical fram
Pindex Book 2016
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Evidence for Magnetic Order in Graphite from Magnetization and Transport Measurements,with very low magnetic impurities concentrations. We demonstrate how and where this magnetically ordered state is produced in graphite bulk, thin flakes and powders in a reproducible manner. The experimental evidence obtained in the last 12 years leaves no doubt that this ferro- or ferrimagnetism is
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https://doi.org/10.1007/978-3-531-94209-4covered. It will be shown how the presence of localized edge states results in the onset of magnetism in zigzag and chiral graphene nanoribbons. Finally, we will discuss common defects in graphene and graphite created as a result of irradiation by high-energy particles and the physical mechanism of
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