2D Materials for Electronics, Sensors and Devices: Synthesis, Characterization, Fabrication and Application
2D Materials for Electronics, Sensors and Devices: Synthesis, Characterization, Fabrication and Application provides an overview of various top-down and bottom-up synthesis techniques, along with stitching, stacking and stoichiometric control methods for different 2D materials and their heterostructures. The book focuses on the widespread applications of various 2D materials in high-performance and low-power sensors, field effect devices, flexible electronics, straintronics, spintronics, brain-inspired electronics, energy harvesting and energy storage devices. This is an important reference for materials scientists and engineers looking to gain a greater understanding on how 2D materials are being used to create a range of low cost, sustainable products and devices.
1140762633
2D Materials for Electronics, Sensors and Devices: Synthesis, Characterization, Fabrication and Application
2D Materials for Electronics, Sensors and Devices: Synthesis, Characterization, Fabrication and Application provides an overview of various top-down and bottom-up synthesis techniques, along with stitching, stacking and stoichiometric control methods for different 2D materials and their heterostructures. The book focuses on the widespread applications of various 2D materials in high-performance and low-power sensors, field effect devices, flexible electronics, straintronics, spintronics, brain-inspired electronics, energy harvesting and energy storage devices. This is an important reference for materials scientists and engineers looking to gain a greater understanding on how 2D materials are being used to create a range of low cost, sustainable products and devices.
200.0 In Stock
2D Materials for Electronics, Sensors and Devices: Synthesis, Characterization, Fabrication and Application

2D Materials for Electronics, Sensors and Devices: Synthesis, Characterization, Fabrication and Application

2D Materials for Electronics, Sensors and Devices: Synthesis, Characterization, Fabrication and Application

2D Materials for Electronics, Sensors and Devices: Synthesis, Characterization, Fabrication and Application

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Overview

2D Materials for Electronics, Sensors and Devices: Synthesis, Characterization, Fabrication and Application provides an overview of various top-down and bottom-up synthesis techniques, along with stitching, stacking and stoichiometric control methods for different 2D materials and their heterostructures. The book focuses on the widespread applications of various 2D materials in high-performance and low-power sensors, field effect devices, flexible electronics, straintronics, spintronics, brain-inspired electronics, energy harvesting and energy storage devices. This is an important reference for materials scientists and engineers looking to gain a greater understanding on how 2D materials are being used to create a range of low cost, sustainable products and devices.

Product Details

ISBN-13: 9780128215050
Publisher: Elsevier Science
Publication date: 09/21/2022
Series: Nanophotonics
Pages: 298
Product dimensions: 7.50(w) x 9.25(h) x 0.63(d)

About the Author

Dr. Das received his B.Eng. degree (2007) in Electronics and Telecommunication Engineering from Jadavpur University, India, and Ph.D. degree (2013) in Electrical and Computer Engineering from Purdue University. He was a Postdoctoral Research Scholar (2013-2015) and Assistant Research Scientist (2015-2016) at Argonne National Laboratory (ANL). Dr. Das joined the Department of Engineering Science and Mechanics (ESM) at Penn State University in January 2016. Dr. Das was the recipient of Young Investigator Award from United States Air Force Office of Scientific Research in 2017 and National Science Foundation (NSF) CAREER award in 2021. Das Research Group at Penn State leads a new multidisciplinary area of science, namely biomimetic sensing, neuromorphic computing, and hardware security inspired by natural designs found in the animal world that allow evolutionary success in resource-constrained environments.

Table of Contents

1. Synthesis of 2D Materials
2. Synthesis of 2D Heterostructures
3. Characterization of 2D Materials
4. Fabrication of 2D Devices and Heterostructures
5. 2D Materials for Flexible Electronics
6. 2D Materials for Optoelectronics
7. 2D Materials for Neuromorphic Devices

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Provide a comprehensive review on the synthesis, characterization and fabrication of electronic devices based on various layered 2D materials

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