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Molecules As Components of Electronic Devises: No. 844 - Rilegato

 
9780841237827: Molecules As Components of Electronic Devises: No. 844

Sinossi

The field of molecular electronics is a novel area of research developing at the interface of electrical engineering, materials science, and chemistry. To date, most publications in the area appear in disciplinary journals. This will be the first comprehensive book devoted to the subject. Molecules as Components of Electronic Devices provides recent research on a range of molecular electronic applications. The research in the volume is focused on three main areas: measurements, materials, and theory. Molecules as Components of Electronic Devices provides recent research on a range of molecular electronic applications. The first section, Measurements, deals with the electrical conductivity and charge retention properties of self-assembled monolayers of molecules. These properties are relevant to molecules that function as insulators, diodes, memory elements, or two-terminal transistors. Wide-area measurements made on metal/SAM/metal devices and scanning-probe measurements of properties of single molecules are included. The section on Materials is more wide ranging in scope; it includes work on nanoparticle and device fabrication for photovoltaic devices and sensors, and the synthesis and testing of specialized molecules for functions such as light emission. The Theory section includes ab initio studies of electron transport through molecules and an introduction to molecular photovoltaic devices.

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Contenuti

  • Preface
  • 1: M. Lieberman: A Crash Course in Molecular Electronics
  • Measurements
  • 2: R. Lloyd Carroll, Ryaan Fuierer, and Christopher B. Gorman: Using Probe Lithography and Self-Assembled Monolayers To Investigate Potential Molecular Electronics Systems
  • 3: Michael L. Chabinyc et al.: Molecular Electronics with a Metal-Insulator-Metal Junction Based on Self-Assembled Monolayers
  • 4: Scott M. Reed, Robert S. Clegg, and James E. Hutchison: Tuning the Electrical Properties of Monolayers by Using Internal Peptide Bonds
  • 5: Kristian M. Roth et al.: Charge-Retention Characteristics of Self-Assembled Monolayers of Molecular-Wire-Linked Porphyrins on Gold
  • 6: A. M. Napper et al.: Effect of Molecular Properties on Electron Transmission through Organic Monolayer Films
  • 7: Gregory Dutton and X.-Y. Zhu: Charge Transfer Molecule-Metal Interfaces: Implication for Molecular Electronics
  • Materials
  • 8: Itamar Willner, Andrew N. Shipway, and Bilha Willner: Layered Nanoparticle Architectures on Surfaces for Sensing and Electronic Functions
  • 9: Gregory V. Hartland, Steve Guillaudeu, and Jose H. Hodak: Laser-Induced Alloying in Metal Nanoparticles: Controlling Spectral Properties with Light
  • 10: Henrik Lindstöm et al. Robeson: A New Method for Manufacturing Dye-Sensitized Solar Cells on Plastic Substrates
  • 11: C. L. Donley et al.: Indium-Tin Oxide-Organic Interfaces
  • 12: Carlo A. Bignozzi and Gerald J. Meyer: Molecules as Components in Electronic Devices: Supramolecular Coordination Compounds as Components in Devices
  • 13: Linda S. Sapochak et al.: Ligand Methylation and Coordination Geometry Effects on the Properties of Zinc and Lithium (8-Quinolinolato) Chelate Electroluminescent Materials
  • 14: Matthew R. Robinson et al.: Design, Synthesis, and Characterization of Well-Defined Amorphous Molecules for Use in Organic LEDs
  • Theory
  • 15: Marshall D. Newton: Electronic Coupling of Donar-Acceptor Sites Mediated by Homologous Unsaturated Organic Bridges
  • 16: M. Di Ventra, N. D. Lang, and S. T. Pantelides: Electronic Transport in Molecular Devices from First Principles
  • 17: Sonja B. Braun-Sand, Olaf Wiest, and Jaouad El-Bahraoui: Computational Studies of Molecular Electronic Devices
  • 18: Brian A. Gregg: Excitonic Solar Cells: The Physics and Chemistry of Organic-Based Photovoltaics
  • Indexes
  • Author Index

Product Description

In Mint Condition.

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