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Introducing Molecular Electronics

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Table of Contents

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    Book Overview
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    Chapter 1 Introducing Molecular Electronics: A Brief Overview
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    Chapter 2 Foundations of Molecular Electronics – Charge Transport in Molecular Conduction Junctions
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    Chapter 3 AC-Driven Transport Through Molecular Wires
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    Chapter 4 Electronic Structure Calculations for Nanomolecular Systems
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    Chapter 5 Ab-initio Non-Equilibrium Green’s Function Formalism for Calculating Electron Transport in Molecular Devices
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    Chapter 6 Tight-Binding DFT for Molecular Electronics (gDFTB)
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    Chapter 7 Current-Induced Effects in Nanoscale Conductors
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    Chapter 8 Single Electron Tunneling in Small Molecules
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    Chapter 9 Transport through Intrinsic Quantum Dots in Interacting Carbon Nanotubes
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    Chapter 10 Contacting Individual Molecules Using Mechanically Controllable Break Junctions
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    Chapter 11 Intrinsic Electronic Conduction Mechanisms in Self-Assembled Monolayers
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    Chapter 12 Making Contacts to Single Molecules: Are We There Yet?
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    Chapter 13 Six Unimolecular Rectifiers and What Lies Ahead
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    Chapter 14 Quantum Transport in Carbon Nanotubes
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    Chapter 15 Carbon Nanotube Electronics and Optoelectronics
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    Chapter 16 Charge Transport in DNA-Based Devices
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    Chapter 17 CMOL: Devices, Circuits, and Architectures
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    Chapter 18 Architectures and Simulations for Nanoprocessor Systems Integrated on the Molecular Scale
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