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商品コード: 9781107163713

2D Materials: Properties and Devices

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書名

2D Materials: Properties and Devices
著者・編者 Avouris, P. et al.
出版社/発行元 Cambridge University Press
発行年/月 2017年7月   
装丁 Hardcover
ページ数/巻数 523 ページ
ISBN 978-1-107-16371-3
発送予定 出版後 海外倉庫よりお取り寄せ 2-3週間以内に発送します

 

 

Desciption

 

Learn about the most recent advances in 2D materials with this comprehensive and accessible text. Providing all the necessary materials science and physics background, leading experts discuss the fundamental properties of a wide range of 2D materials, and their potential applications in electronic, optoelectronic and photonic devices. Several important classes of materials are covered, from more established ones such as graphene, hexagonal boron nitride, and transition metal dichalcogenides, to new and emerging materials such as black phosphorus, silicene, and germanene. Readers will gain an in-depth understanding of the electronic structure and optical, thermal, mechanical, vibrational, spin and plasmonic properties of each material, as well as the different techniques that can be used for their synthesis. Presenting a unified perspective on 2D materials, this is an excellent resource for graduate students, researchers and practitioners working in nanotechnology, nanoelectronics, nanophotonics, condensed matter physics, and chemistry.

- Provides a comprehensive and unified overview of 2D materials
- Includes authoritative explanations by leading researchers in the field
- Accessible even to students with only an undergraduate background in science and engineering

 

 

Contents:

 

1. Graphene: basic properties
2. Electrical transport in graphene: carrier scattering by impurities and phonons
3. Optical properties of graphene
4. Graphene mechanical properties
5. Vibrations in graphene
6. Thermal properties of graphene: from physics to applications
7. Graphene plasmonics
8. Electron optics with graphene p-n junctions
9. Graphene electronics
10. Graphene: optoelectronic devices
11. Graphene spintronics
12. Graphene-BN heterostructures
13. Controlled growth of graphene crystals by chemical vapor deposition: from solid metals to liquid metals
14. Electronic properties and strain engineering in semiconducting transition metal dichalcogenides
15. Valley-spin physics in 2D semiconducting transition metal dichalcogenides
16. Electrical transport in MoS2, a prototypical semiconducting TMDC
17. Optical properties of TMD heterostructures
18. TMDs - optoelectronic devices
19. Large area synthesis
20. Defects in two-dimensional materials
21. Theoretical overview of black phosphorus
22. Anisotropic properties of black phosphorus
23. Optical properties and optoelectronic applications of black phosphorus
24. Silicene, germanene and stanene
25. Predictions of single-layer honeycomb structures from first-principles

 

 

 

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