Carbon nanotubes science and applications 1st Edition by M Meyyappan – Ebook PDF Instant Download/Delivery: 0849321115, 9780849321115
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ISBN 10: 0849321115
ISBN 13: 9780849321115
Author: M Meyyappan
Carbon nanotubes science and applications 1st Table of contents:
1: Structures and Properties of Carbon Nanotubes
1.1 Bonding of Carbon Atoms
1.2 Defect-Free Nanotube
1.3 Defective Nanotubes
1.4 Electronic Properties
1.5 Optical and Optoelectronic Properties
1.6 Mechanical and Electromechanical Properties
1.7 Magnetic and Electromagnetic Properties
1.8 Chemical and Electrochemical Properties
1.9 Thermal and Thermoelectric Properties
Summary
References
2: Computational Nanotechnology of Carbon Nanotubes
2.1 Introduction
2.2 Multiscale Simulation Techniques for Computational Nanotechnology
2.3 Structure and Symmetry
2.4 Nanomechanics and Thermal Properties
2.5 Chemical Functionalization, Physisorption, and Diffusion in Carbon Nanotubes
2.6 Nanoelectronics and Sensors
2.7 Summary and Outlook
Acknowledgments
References
3: Growth of Carbon Nanotubes by Arc Discharge and Laser Ablation
3.1 Introduction
3.2 Arc Discharge Production of MWNTs
3.3 MWNT Production by Laser Ablation of Graphite
3.4 Arc Discharge Production of SWNTs
3.5 Arc Discharge Production of DWNTs
3.6 Swnt Production by Laser Ablation of Carbon-Metal Target
3.7 Conclusions
References
4: Growth: CVD and PECVD
4.1 Introduction
4.2 Growth Apparatus
4.3 Catalyst Preparation
4.4 Growth Results
4.5 Growth Mechanisms
4.6 Modeling and Diagnostics
4.7 Challenges and Future Directions
References
5: Characterization Techniques in Carbon Nanotube Research
5.1 Introduction
5.2 Electron Microscopy
5.3 Atomic Force and Scanning Tunneling Microscopy
5.4 Properties Characterization
5.5 Electrical Conductivity Measurements
5.6 Thermoelectric Measurements
5.7 Raman Spectroscopy
5.8 X-Ray Diffraction
5.9 Summary
References
6: Applications in Scanning Probe Microscopy
6.1 Introduction
6.2 Development of the Atomic Force Microscope and the Role of the Scanning Probe
6.3 Mechanical Properties of Carbon Nanotubes in the Context of SPM Applications
6.4 Fabrication of Carbon Nanotube Scanning Probes
6.5 Applications of Carbon Nanotube Probes
6.6 Summary
References
7: Nanoelectronics Applications
7.1 Carrier Characterization
7.2 Doping Methods
7.3 SWNT FETs
7.4 Intermolecular Metal-Semiconductor SWNT Heterojunctions
7.5 SWNT pn Junction as Esaki Diode
7.6 Single-Electron Tunneling Devices Using SWNTs
7.7 Other Semiconducting SWNT Devices
7.8 Transport in Metallic SWNTs
7.9 General Remarks on NanoFETs
Acknowledgment
References
8: Field Emission
8.1 Introduction
8.2 Structure and Microstructure of CNT Field Emitters
8.3 Applications of CNT Emitters
8.4 Conclusions
References
9: Carbon Nanotube Applications: Chemical and Physical Sensors
9.1 Introduction
9.2 Carbon Nanotube Chemical Sensors
9.3 Carbon Nanotube Physical Sensors and Actuators
9.4 Summary and Outlook
References
10: Applications: Biosensors
10.1 Introduction
10.2 Fabrication of Carbon Nanotube Biosensors
10.3 Biosensing Applications
10.4 Summary and Future Directions
References
11: Applications: Composites
11.1 Introduction
11.2 Nanotube Superiority
11.3 Polymer Nanocomposites
11.4 Nanotube-Metal Composites
11.5 Ceramic Matrix Composites
11.6 Summary and Outlook
Acknowledgments
References
12: Other Applications
12.1 Applications in Integrated Circuit Manufacturing
12.2 Catalyst Support and Adsorbents
12.3 Storage/Intercalation of Metals
12.4 Membranes and Separation
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