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Two-Dimensional MXenes for Terahertz Technology

Autor Xu Xiao, Tianpeng Ding, Wenke Xie, Yang Fei
en Limba Engleză Hardback – 27 ian 2027
The first comprehensive book dedicated to the intersection of MXene materials and terahertz technology.
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Specificații

ISBN-13: 9783527357048
ISBN-10: 3527357041
Pagini: 240
Ilustrații: 3 schwarz-weiße und 38 farbige Abbildungen
Dimensiuni: 170 x 244 mm
Editura: Wiley-VCH GmbH

Notă biografică

Xu Xiao is a Professor in the State Key Laboratory of Electronic Thin Film and Integrated Devices at University of Electronic Science and Technology of China. He directs the Institute for Interdisciplinary Research in Medicine and Engineering and was named a Highly Cited Researcher by Clarivate in 2022 and a Stanford-Elsevier Top 2% scientist.

Tianpeng Ding is a Professor in the School of Physics at University of Electronic Science and Technology of China, specializing in terahertz wave-matter interactions, photothermoelectric detectors, and thermoelectric materials. He was selected as a Stanford-Elsevier Top 2% scientist in 2024 and 2025.

Wenke Xie is an Associate Professor in the School of Physics at University of Electronic Science and Technology of China and Deputy Director of the Institute for Interdisciplinary Research in Medicine and Engineering. Her research focuses on flexible iontronic materials and devices based on hydrogels and MXenes.

Yang Fei is a Distinguished Associate Research Fellow in the School of Physics at University of Electronic Science and Technology of China. His research focuses on electromagnetic wave-absorbing materials, electromagnetic interference shielding materials, and clinical applications of electromagnetic functional materials.


Cuprins

Foreword
Preface
Acknowledgements
Acronyms
Introduction
Chapter 01 Introduction of MXene
1.1. The Discovery of MXene
1.3. Properties and Regulation of MXene
1.4. Chapter Summary
 
Chapter 02 Introduction of Terahertz Wave
2.1. Definition of Terahertz Wave
2.2. Fundamental Properties of Terahertz Waves
2.3. Terahertz Time-Domain Spectroscopy
2.4. Chapter Summary
 
Chapter 03 Interaction of Terahertz Wave with MXene Thin Film
3.1 Theoretical foundations of terahertz intrinsic absorption in ultrathin conductive films
3.2 Ultrabroadband terahertz absorption characteristics of MXene films
3.3. Influence of Different MXene Compositions on Terahertz Absorption Performance
3.4. Chapter Summary
 
Chapter 04 MXene-Based Terahertz Wave Absorbing and Shielding Materials
4.1. MXene-Based Terahertz Wave Shielding Materials
4.2. MXene-Based Terahertz Wave Absorbing Materials
4.3. MXene-Functionalized Textiles
4.4. Chapter Summary
 
Chapter 05 MXene-Based Terahertz Biomedical Sensing and Detection Applications
5.1. Needs and Challenges for Terahertz Biomedical Sensing
5.2. Technical Approaches of MXene for Terahertz Biomedical Sensing
5.3. MXene-Enhanced Terahertz Biomolecular Sensing
5.4. MXene-Powered Terahertz Metamaterial as a Real-Time Biosensing Platform[13]
5.5. Chapter Summary
 
Chapter 06 Other 2D Materials for THz: A Comparative Study with MXenes
6.1. 2D materials for THz applications
6.2. Comparative Analysis of Typical 2D Materials Relative to MXenes
6.3. Quantitative Performance Benchmark
6.4. Complementary Material Strategies and Heterostructure Design
6.5. Chapter Summary
 
Summary and Outlook