
Nanoelectronics Devices: Design, Materials, and Applications (Part I)
- English
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Nanoelectronics Devices: Design, Materials, and Applications (Part I)
About this book
Nanoelectronics Devices: Design, Materials, and Applications provides information about the progress of nanomaterial and nanoelectronic devices and their applications in diverse fields (including semiconductor electronics, biomedical engineering, energy production and agriculture). The book is divided into two parts. The editors have included a blend of basic and advanced information with references to current research. The book is intended as an update for researchers and industry professionals in the field of electronics and nanotechnology. It can also serve as a reference book for students taking advanced courses in electronics and technology. The editors have included MCQs for evaluating the readers' understanding of the topics covered in the book. Topics covered in Part 1 include basic knowledge on nanoelectronics with examples of testing different device parameters. - The present, past, and future of nanoelectronics, - An introduction to Nanoelectronics and applicability of Moore's law - Transport of charge carrier, electrode, and measurement of device parameters - Fermi level adjustment in junction less transistor, - Non-polar devices and their simulation - The negative capacitance in MOSFET devices - Effect of electrode in the device operation - Second and Sixth group semiconductors, - FinFET principal and future, Electronics and optics integration for fast processing and data communication - Batteryless photo detectors - Solar cell fabrication and applications - Van der Waals assembled nanomaterials Audience Researchers and industry professionals in the field of electronics and nanotechnology; students taking advanced courses in electronics and technology.
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Table of contents
- Welcome
- Table of Content
- Title
- BENTHAM SCIENCE PUBLISHERS LTD.
- FOREWORD
- PREFACE
- List of Contributors
- Role of Nanotechnology in Nanoelectronics
- Self-Assembled Monolayer-Based Molecular Electronic Devices
- Performance Analysis of Rectangular Core-Shell Double Gate Junctionless Transistor (RCS-DGJLT)
- Performance Analysis of Electrical Characteristics of Hetero-junction LTFET at Different Temperatures for IoT Applications
- Device Structure Modifications in Conventional Tunnel Field Effect Transistor (TFET) for Low-power Applications
- Impact of Electrode Length on I-V Characteristics to Linearity of TFET With Source Pocket
- II-VI Semiconductor-based Thin-Film Transistor Sensor for Room Temperature Hydrogen Detec- tion From Idea to Product Development
- FinFET Advancements and Challenges: A State-of- the-Art Review
- Optically Gated Vertical Tunnel FET for Near-Infrared Sensing Application
- Self-Powered Photodetectors: Fundamentals and Recent Advancements
- Nanostructured Solar Cells as Sustainable Optoelectronic Device
- Nanomaterials Applicability in Blended Perovskite Solar Cells: To commercialize Lead-free Content, Including Easy End of life Management in Solar Infrastructure
- Nanomaterials and Their Applications in Energy Harvesting
- Nanotechnological Advancement in Energy Harvesting and Energy Storage with Hybridization Potentiality