
Advanced Solid-state Devices for Emerging Nanotechnologies
- English
- ePUB (mobile friendly)
- Available on iOS & Android
Advanced Solid-state Devices for Emerging Nanotechnologies
About this book
Advanced Solid-state Devices for Emerging Technologies provides a comprehensive overview of the transformative role played by nanotechnology in the development of solid-state devices for various applications, including efficient signal processing, power, data communication, sensor and IoT-enabled devices. The introductory section of the book provides the fundamental working principles of the solid-state devices for signal processing, energy harvesting and sensing of stimulants, highlighting their significance for addressing some of the present challenges. The book also discusses the key structures of the devices with different functional units, the role of basic and functionalized nanomaterials in enhancing their performance, with diverse applications potential for sensing, powering devices and signal processing. Other aspects covered include the experimental methods, procedures in determining the response parameters of the devices and the application of artificial intelligence in modelling and optimization of system parameters. The proposed book is useful for researchers, graduate students, and undergraduate students, working technical professionals in engineering and the sciences.
Key Features:
- Discusses advanced materials and structures for developing emerging technologies for micro and nano applications
- Development of efficient interfacing and signal processing circuits with the idea of machine learning-based sensor data and fault analysis
- Covers open research challenges and the future scope of research directions on emerging micro to nano technology
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Information
Table of contents
- Cover
- Half-Title
- Title
- Copyright
- Contents
- About the Editors
- List of Contributors
- Chapter 1 Graphene and rGO-Based High-Performance Semiconductor Photodetectors Utilizing Al2O3 Thin Layer in Ultraviolet Range
- Chapter 2 Electrochemical Analysis of MoS2ârGO Composites Using Screen-Printed Carbon Electrode for Supercapacitor Application
- Chapter 3 PCB-Integrated High-Frequency Graphene FET Sensor for Nucleic Acid Detection in Communicable Disease Diagnosis
- Chapter 4 Photocatalytic Electrochemical Fuel Cell with Nanomaterial-Enhanced Carbon Cloth Electrodes
- Chapter 5 Rayleigh WaveâBased Surface Acoustic Wave Devices: Importance and Applications
- Chapter 6 Semiconducting Metal OxideâBased pân Homojunction as a Potential Gas and Vapor Sensing Device: A Holistic Overview
- Chapter 7 Piezoelectric MEMS-Based Sensors and Actuators: Current Status and Future Prospects
- Chapter 8 Fabrication of a Piezoelectric Actuator for Microvalve Fabrication Using the Transfer Process
- Chapter 9 Design and Development of Highly Flexible and Stable Capacitive Pressure Sensors Using Compressible Micropyramidal Dielectric Layer
- Chapter 10 Graphitic Carbon NitrideâEnhanced Comb-Type Sensor for Online Moisture Detection in Transformer Oil
- Chapter 11 Multifunctional Properties of (Sr,Mn)-Modified BaTiO3 Nanoceramics for Advanced Technologies
- Chapter 12 First-Principles Insights into the Half-Metallic and Thermoelectric Properties of Vacancy-Ordered Halide Double Perovskite Rb2VCl6 A Spintronic and Energy Conversion Prospect
- Chapter 13 Artificial Neural Network Modeling of Nanoporous Alumina Formed by Electrochemical Anodization
- Chapter 14 Photonic Sensors and Machine Learning: Advancing Real-Time Optimization in Resource-Constrained Environments
- Chapter 15 Mixed-Signal Conditioning Circuit for Linearizing any Non-Linear Sensor Output
- Chapter 16 AI-Driven Control System for Linear Displacement SMA Actuator for 3D Printer Bed Leveling Automation
- Chapter 17 Integer Linear ProgrammingâBased Optimal PMU Placement for Reduced Synchronized Data Burden
- Chapter 18 Testing Features of the Indigenous Protocol Testing Platform for Indian Smart and Static Energy Meters
- Index