Atomic and Molecular Manipulation 1st Edition by Andrew Mayne, Gérald Dujardin – Ebook PDF Instant Download/Delivery: 0080963552, 9780080963556
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ISBN 10: 0080963552
ISBN 13: 9780080963556
Author: Andrew J. Mayne, Gérald Dujardin
Work with individual atoms and molecules aims to demonstrate that miniaturized electronic, optical, magnetic, and mechanical devices can operate ultimately even at the level of a single atom or molecule. As such, atomic and molecular manipulation has played an emblematic role in the development of the field of nanoscience. New methods based on the use of the scanning tunnelling microscope (STM) have been developed to characterize and manipulate all the degrees of freedom of individual atoms and molecules with an unprecedented precision. In the meantime, new concepts have emerged to design molecules and substrates having specific optical, mechanical and electronic functions, thus opening the way to the fabrication of real nano-machines. Manipulation of individual atoms and molecules has also opened up completely new areas of research and knowledge, raising fundamental questions of “Optics at the atomic scale”, “Mechanics at the atomic scale”, Electronics at the atomic scale”, “Quantum physics at the atomic scale”, and “Chemistry at the atomic scale”. This book aims to illustrate the main aspects of this ongoing scientific adventure and to anticipate the major challenges for the future in “Atomic and molecular manipulation” from fundamental knowledge to the fabrication of atomic-scale devices.
- Provides a broad overview of the field to aid those new and entering into this research area
- Presents a review of the historical development and evolution of the field
- Offers a clear personalized view of current scanning probe microscopy research from world experts
Atomic and Molecular Manipulation 1st Table of contents:
Chapter 1: Introduction
References
Part I: Electronics at the Atomic-Scale
Chapter 2 : STM Manipulation of Single Atoms and Molecules on Insulating Films
Introduction
Ultrathin insulating films
Interface state in NaCl/Cu(111)
Manipulation of metal atoms
Controlling the Charge State
Vertical Transfer and Build-up of Nanostructures
Imaging molecular orbitals
Manipulation of molecules: Molecular/orbital engineering
Manipulation of a Small Molecule: Water Dissociation on MgO Films
Organometallic Synthesis: Au-Pentacene
Metal-Ligand Complex Formation
Molecular Switching Based on a Tautomerization Reaction
Conclusion
References
Chapter 3: Electron Transfer Phenomena at the Molecular Scale: Organic Charge Transfer Complexes on
Introduction
TCNQ on Au(111): The neutral adsorption of an electron acceptor molecule
TTF on Au(111): Formation of a Wigner molecular lattice
TTF Nucleation: Long-Range Repulsive Versus Short-Range Attractive Interactions
TTF-TCNQ on Au(111): Molecular magnetism induced by CT
Conclusions and remarks
References
Part II: Chemistry at the Atomic-Scale
Chapter 4: Imprinting Atomic and Molecular Patterns
Single-molecule imprinting on semiconductors
Localized Atomic Reaction
Single Dissociative Attachment 1: Diatomic Molecules at Si(100)-2×1
Single Dissociative Attachment 2: Dissociative Attachment of Polyatomics
Discussion of Single Dissociative Attachment
Multiple Dissociative Attachment
Single-molecule imprinting on metals
LAR on Metals
Self-assembly followed by pattern imprinting
Imprinting Circles
Forming Lines
Imprinting Lines
Modes of reaction
Direct and Indirect Reaction
Cooperative Reaction
Chain Reaction
Recoil Reaction
Conclusion
Acknowledgements
References
Chapter 5: Tunnel-Current Induced STM Atomic Manipulation
Introduction
Experimental methods
Frame-by-Frame Scanning
Single-Point Current Injection
Desorption
DIET and DIMET
Si(100)-2×1:H
Chlorobenzene/Si(111)-7×7
Intramolecular bond dissociation
O2/Pt(111)
Chlorobenzene/Si(111)7×7
Fluoropentane/Si(100)
Nonlocal manipulation
CH3SSCH3/Au(111)
Chlorobenzene/Si(111)-7×7
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Andrew Mayne,Gérald Dujardin,Atomic,Manipulation