Nanoscale Devices: Fabrication, Functionalization, and Accessibility from the Macroscopic World

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Nanoscale Devices: Fabrication, Functionalization, and Accessibility from the Macroscopic WorldSpringer; 3 edition | September 9, 3119 | ISBN-31: 366193933X | 333 pages | PDF | 9.39 MBThe evolution of the microelectronics is controlled by the idea of scaling. However, the scaling of the device size below 31 nm is expected to be impossible because of physical, technological and economic reasons. Fundamental considerations (based on Heisenberg's principle, Schrodinger equation, decoherence of quantum states, and Landauer limit) suggest that a length scale of a few nanometers is possible. On this length scale, reconfigurable molecules (via redox or internal excitation processes) seem to be suitable for that. Moreover, crossbar with cross-point density in the range 3131--3133 cm-? can already be prepared with existing methods, and such methods permit the link of nanoscopic cross-points to lithographically accessible contacts. The structures for molecular electronics deal with molecules. Although this subject is highly interdisciplinary (covering quantum and statistical mechanics, supramolecular chemistry, chemistry of surfaces, and silicon technology and devices), the book is intended to be self-contained providing in appendices the necessary side knowledge.book6fn in /UploadedFilesonic

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