Nanoelectronics: Nanowires, Molecular Electronics, and Nanodevices
Autor Krzysztof Iniewskien Limba Engleză Hardback – 16 oct 2010
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The latest advances in nanoelectronics
This definitive volume addresses the state of the art in nanoelectronics, covering nanowires, molecular electronics, and nanodevices. Written by global experts in the field, Nanoelectronics discusses cutting-edge techniques and emerging materials, such as carbon nanotubes and quantum dots. This pioneering work offers a comprehensive survey of nanofabrication options for use in next-generation technologies.Nanoelectronics covers:
- Electrical properties of metallic nanowires
- Electromigration defect nucleation in damascene copper interconnect lines
- Carbon nanotube interconnects in CMOS integrated circuits
- Printed organic electronics
- One-dimensional nanostructure-enabled chemical sensing
- Cross-section fabrication and analysis of nanoscale device structures and complex organic electronics
- Microfabrication and applications of nanoparticle-doped conductive polymers
- Single-electron conductivity in organic nanostructures for transistors and memories
- Synthesis of molecular bioelectronic nanostructures
- Nanostructured electrode materials for advanced Li-ion batteries
- Quantum-dot devices based on carbon nanotubes
- Carbon nanotubes as electromechanical actuators
- Low-level nanoscale electrical measurements and ESD
- Nanopackaging
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Specificații
ISBN-13: 9780071664486
ISBN-10: 0071664483
Pagini: 560
Ilustrații: illustrations
Dimensiuni: 158 x 239 x 33 mm
Greutate: 0.9 kg
Ediția:New.
Editura: McGraw Hill Education
Colecția McGraw-Hill
Locul publicării:United States
ISBN-10: 0071664483
Pagini: 560
Ilustrații: illustrations
Dimensiuni: 158 x 239 x 33 mm
Greutate: 0.9 kg
Ediția:New.
Editura: McGraw Hill Education
Colecția McGraw-Hill
Locul publicării:United States
Cuprins
List of Authors; Preface; Part I: Nanowires; Chapter 1. Electrical Properties of Metallic Nanowires for Nanoelectronic Applications; Chapter 2. Texture and Microstructure Dependence of Electromigration Defect Nucleation in Damascene Cu Interconnect Lines Studies in Situ by EBSD; Chapter 3. Carbon Nanotube Interconnects in CMOS Integrated Circuits; Chapter 4. Progresses and Challenges of Nanowire Integrated Circuitry; Part II: Molecular Electronics; Chapter 5. Printed Organic Electronics: From Materials to Circuits; Chapter 6. One-Dimensional Nanostructure-Enabled Chemical Sensing; Chapter 7. Cross-Section Fabrication and Analysis of Nanoscale Device Structures and Complex Organic Electronics; Chapter 8. Microfabrication and Applications of Nanoparticle-Doped Conductive Polymers; Chapter 9. Single-Electron Conductivity in Organic Nanostructures for Transistors and Memories; Chapter 10. Recent Developments toward the Synthesis of Supramolecular Bioelectronic Nanostructures; Part III: Nanodevices; Chapter 11. Mew Developments in Nanostructured Electrode Materials for Advanced Li-Ion Batteries; Chapter 12. Quantum-Dot Devices Based on Carbon Nanotubes; Chapter 13. Individual Carbon Nanotubes as Electromechanical Actuators: Simulations and Initial Experiments; Chapter 14. Low-Level Electrical Measurements at the Nanoscale; Chapter 15. Nano ESD: Electrostatic Discharge in the Nanoelectronic Era; Chapter 16. Nanopackaging; Index