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This book focuses on the fundamental excitation properties of a large range of graphene-related materials, presenting a new theoretical framework that couples electronic properties and e-e Coulomb interactions together in order to thoroughly explore Coulomb excitations and decay rates in carbon-nanotube-related systems. It is the ideal reference text for researchers in nanomaterials.
This book reviews the magnetic quantization phenomena in emerging low-D materials and develops the tight-binding model in application to quantitization phenomena in 2D materials. The origins of the phenomena are discussed in depth, particularly focusing on graphene, tinene, phosphorene and MoS2, with a broader model also drawn.
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