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1 2D topological insulators and quantum spin Hall states: what are they and which are the potential applications for the real world?
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Paolo Bondavalli
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Kapitel in diesem Buch
- Frontmatter I
- Foreword VII
- Author’s premises IX
- Contents XI
- Introduction 1
- 1 2D topological insulators and quantum spin Hall states: what are they and which are the potential applications for the real world? 3
- 2 Magic angle: twisting graphene layers to create superconductors 33
- 3 Valleytronics and a new way to encode information using 2D materials 55
- 4 2D black phosphorus: difficult to handle but so interesting for opto-electronics 71
- 5 Straintronics: a new way to engineer the physical intrinsic properties of 2D materials and van der Waals structures 105
- 6 Exotic properties of 2D materials: where are we? The compromise between beyond CMOS and more-than-Moore vision and roadmaps 129
- Index 143
Kapitel in diesem Buch
- Frontmatter I
- Foreword VII
- Author’s premises IX
- Contents XI
- Introduction 1
- 1 2D topological insulators and quantum spin Hall states: what are they and which are the potential applications for the real world? 3
- 2 Magic angle: twisting graphene layers to create superconductors 33
- 3 Valleytronics and a new way to encode information using 2D materials 55
- 4 2D black phosphorus: difficult to handle but so interesting for opto-electronics 71
- 5 Straintronics: a new way to engineer the physical intrinsic properties of 2D materials and van der Waals structures 105
- 6 Exotic properties of 2D materials: where are we? The compromise between beyond CMOS and more-than-Moore vision and roadmaps 129
- Index 143