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Full Description
The book comprehensively discusses nanowire materials, devices, and circuit aspects for high-performance chip design.
• Covers material for nanowires, device models, and applications for circuit design based on nanowire field-effect transistors.
• Explains a wide spectrum for designing robust multi-gate nanowire devices and low-power circuits.
• Highlights the conventional and novel nanomaterials, devices, and circuits, leakage current mitigation techniques, and important tradeoffs along with exhaustive analysis.
• Includes nanowire device structures and modeling along with MATLAB codes.
• Offers an in-depth insight into the temporal degradation awareness and interconnects delay, which provides inside exposure to the impact of reductions in speed and consumption of more power.
The text is primarily written for senior undergraduates, graduate students, and academic researchers in electrical engineering, electronics and communications engineering, materials science, nanoscience, and nanotechnology.
Contents
Chapter 0 Front Matter
Chapter 1 III-V semiconductor Nano crystal formation using aqueous state super lattice in silicon nanowires
Chapter 2 Flexible Energy Storage Devices
Chapter 3 2D materials based sensor design
Chapter 4 Machine Learning in Quantum Material
Chapter 5 Nanowire-Based Biosensors: Unveiling Growth to Applications
Chapter 6 NANOWIRE-FET: ROLE IN HEALTHCARE APPLICATIONS
Chapter 7 Enhancing Nanowire TFET Performance through Hetero Dielectric and Hetero Material at the Device and Circuit Level
Chapter 8 Reconfigurable Nanowire Transistors and Their Applications in Novel Electronic Circuits and Systems
Chapter 9 Nanowire Field Effect Transistors-Applications in Integrated Circuits and Sensing
Chapter 10 IOT-BASED ENERGY METER FOR PERFORMANCE EVALUATION OF NANOWIRE-ENHANCED LITHIUM-ION BATTERIES
Chapter 11 A COMPREHENSIVE REVIEW ON NANOWIRES: SYNTHESIS, UTILITY AND TECHNICAL HURDLES
Chapter 12 NANO-ENHANCED BIOSENSORS