Shulph Ink
Defects in Two-Dimensional Materials
Defects in Two-Dimensional Materials
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Defects in Two-Dimensional Materials explores the physics and chemistry of defects in 2D materials, including graphene, h-BN, and TMDs, and their effects on physical, electrical, and optical properties. It reviews techniques to characterize defects and compares them across different 2D materials, with the primary objective of controlling defects to improve device performance or for novel applications.
Format: Paperback / softback
Length: 432 pages
Publication date: 18 February 2022
Publisher: Elsevier Science Publishing Co Inc
Defects in Two-Dimensional Materials delves into the intricate realm of the fundamental physics and chemistry governing defects in 2D materials, exploring their profound impact on physical, electrical, and optical properties. This comprehensive book examines a wide range of 2D materials, including graphene, hexagonal boron nitride (h-BN), and transition metal dichalcogenides (TMD). By gaining insights into these materials, scientists and engineers will gain the ability to tailor their properties to meet specific application demands.
The book comprehensively reviews various techniques employed to characterize 2D material defects, providing a comparative analysis of the defects present in different 2D materials such as graphene, h-BN, TMDs, phosphorene, silicene, and more. As the field of two-dimensional materials research and development continues to surge, driven by its vast potential for industrial applications, this book serves as a vital resource. Its primary objective is to review, discuss, and present opportunities for defect control in these materials, aiming to enhance device performance in general or harness the defects for innovative applications.
By delving into the complexities of 2D material defects, this book offers valuable insights into the development of advanced technologies and the pursuit of groundbreaking discoveries. It serves as a crucial reference for researchers, scientists, engineers, and students alike, empowering them to unlock the full potential of 2D materials in various industries.
Weight: 450g
ISBN-13: 9780128202920
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