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Nanoscale Semiconductor Devices: Technology, and Applications: Electronic Materials, Devices, Systems and Manufacturing

Editat de D. Nirmal
en Limba Engleză Hardback – sep 2026
This book covers 2D materials, transistors, and low-power transistor technologies. Additionally, it discusses wide range of semiconductor devices such as transistors, LEDs, energy harvesting devices, and spintronics devices.
  • Covers nanoscale semiconductor materials, low-power transistors, and applications in integrated circuits.
  • Offers comprehensive coverage of design, simulation, and experimentation for a range of field-effect transistors.
  • Highlights the importance of using piezoelectric nanogenerators for energy applications.
  • Showcases the developments in nanoscale device simulation and opportunities in electronic fabrication.
  • Explains the latest nanoscale sensors, micro to nanoscale energy harvesting devices, and nano energy storage devices.
The book is primarily written for senior undergraduates, graduate students, and academic researchers in electrical engineering, electronics, and communications engineering. 
 
 
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Specificații

ISBN-13: 9781041063711
ISBN-10: 1041063717
Pagini: 400
Ilustrații: 334
Dimensiuni: 156 x 234 mm
Ediția:1
Editura: CRC Press
Colecția CRC Press
Seria Electronic Materials, Devices, Systems and Manufacturing


Public țintă

Academic, Postgraduate, and Undergraduate Advanced

Cuprins

1. Introduction Semiconductor Devices. 2. Advanced Nanoscale Field-Effect Transistors. 3. Nanoscale 2D Material Field-Effect Transistors and Applications. 4. Challenges in Nanoscale Biomedical Devices. 5. Emerging Nanoscale Sensors and Applications. 6. Micro to Nanoscale Energy Harvesting Devices. 7. Nano Energy Storage Devices and Fabrication Challenges. 8. Recent Trends in Light-Emitting Diodes with Applications. 9. Piezoelectric Nano Generators for Energy Applications. 10. Nanoscale Super Capacitors. 11. Nanoscale Device Fabrications Challenges and Its Impact in the Semiconductor Industry. 12. Developments in Nanoscale Simulation and Opportunities in Electronic Fabrication. 13. Nanoscale Device Modelling and Requirements in the Semiconductor Industry. 14. Emerging Spintronic Devices and Its Applications. 15. Molecular Electronics and Its Recent Developments.

Notă biografică

D. Nirmal serves as Professor in Electronics and Communication Engineering and Associate Dean of Engineering and Technology at Karunya Institute of Technology and Sciences, India. Prof. Nirmal has played a key role in driving academic reforms, promoting outcome-based competency-focused curriculum frameworks, and facilitating national accreditation initiatives. His research focuses on Modeling and TCAD simulation of power semiconductor devices, GaN HEMT devices, design, fabrication, and reliability analysis and circuit applications. Dr. Nirmal has successfully secured ₹21.1 million in research funding from DRDO, ISRO, the Ministry of Electronics and Information Technology, and AICTE, along with product-development grants from the IIT Tirupati Navavishkar I-Hub Foundation (IITTNiF) and Analog Devices India Pvt. Ltd. (ADI). He is the founding chair of the IEEE Electron Devices Society (EDS) Coimbatore Chapter and currently serves as the IEEE EDS Region 10 SRC Chair. Additionally, he is an active volunteer on several IEEE committees and a technical committee member for EDS Compound Semiconductor Devices and Circuits. His outstanding contributions have earned him numerous accolades, including the IEI Young Engineer Award, the IETE Smt. Manorama Rathore Memorial Award (2022), and the Young Scientist Award (2019) from the Academy of Sciences. A prolific researcher, he has authored over 180 peer-reviewed publications and holds three patents. He is a Fellow of IETE and a Senior Member of IEEE. Dr. Nirmal is also a sought-after speaker, delivering keynote addresses and lectures at national and international conferences.

Descriere

The book delves into the intricacies of advanced nanoscale devices, exploring their design aspects, fabrication aspects, and emerging applications. It covers 2D materials, biomedical devices, and sensors, witnessing how nanotechnology is revolutionizing fields as diverse as healthcare and environmental monitoring.