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Molecular and Nano Electronics: Analysis, Design and Simulation
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  • Molecular and Nano Electronics: Analysis, Design and Simulation
ID: 173831
Jorge Seminario
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The aim of Molecular and Nano Electronics: Analysis, Design and Simulation is a design of molecular and nano-electronics. The binary devices (transistors). The binary devices (transistors). The construction of such devices yields gates that are able to perform. Boolean operations and can be combined with the computing system, electronically currents and charges. Z o. O. O.

* Provides a theory-guided approach to the design of molecular and nano-electronics
* Includes solutions for researchers working in this area
* Contributions from some of the most active researchers in the field of nano-electronics

1. Analysis of Programmable Molecular Electronic Systems (Yuefei Ma, JM Seminario).

2. Bio-Molecular Devices for Terahertz Frequency Sensing (Ying Luo et al .).

3. Charge Delocalization in (n, 0) Carbon Nanotubes model (PA Politzer et al .).

4. Metal-Molecule-Semiconductor Junctions: An Ab Initio Analysis (L. Agapito, JM Seminario).

5. Modeling Molecular Switches: a Flexible Molecule Anchored to a Surface (Bidisa Das, Shuji Abe).

6. Semi-Empirical Simulation of Carbon Nanotube Properties under Electronic Perturbations (Yan Li, Umberto Ravaioli).

7. Nonequilibrium Green's Function Modeling of the Quantum Transport of Molecular Electronic Devices (Pawel Pomorski et al .).

8. The gDFTB Tool for Molecular Electronics (A. Pecchia et al .).

9. Theory of Quantum Electron Transport through Molecules as the Bases of Molecular Devices (M. Tsukada et al .).

10. Time-dependent Transport Phenomena (G. Stefanucci et al .).
173831

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