Dielectrics For Nanosystems 5 Materials Science Processing Reliability And Manufacturing And Tutorials In Nanotechnology


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Dielectrics for Nanosystems 5


Dielectrics for Nanosystems 5

Author:

language: en

Publisher:

Release Date: 2012


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Dielectrics for Nanosystems 5: Materials Science, Processing, Reliability, and Manufacturing -And- Tutorials in Nanotechnology


Dielectrics for Nanosystems 5: Materials Science, Processing, Reliability, and Manufacturing -And- Tutorials in Nanotechnology

Author: Electrochemical Society

language: en

Publisher: ECS Transactions

Release Date: 2012-04


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This issue will cover papers relating to advanced semiconductor products that are true representatives of nanoelectronics have reached below 100 nm. Depending on the application, the nanosystem may consist of one or more of the following types of functional components: electronic, optical, magnetic, mechanical, biological, chemical, energy sources, and various types of sensing devices. As long as one or more of these functional devices is in 1-100 nm dimensions, the resultant system can be defined as nanosystem. Papers will be in all areas of dielectric issues in nanosystems. In addition to traditional areas of semiconductor processing and packaging of nanoelectronics, emphasis will be placed on areas where multifunctional device integration (through innovation in design, materials, and processing at the device and system levels) will lead to new applications of nanosystems. Beyond CMOS device structures and properties of semiconductor nanoelectronics will also be included.

Nanofabrication


Nanofabrication

Author: Maria Stepanova

language: en

Publisher: Springer Science & Business Media

Release Date: 2011-11-08


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Intended to update scientists and engineers on the current state of the art in a variety of key techniques used extensively in the fabrication of structures at the nanoscale. The present work covers the essential technologies for creating sub 25 nm features lithographically, depositing layers with nanometer control, and etching patterns and structures at the nanoscale. A distinguishing feature of this book is a focus not on extension of microelectronics fabrication, but rather on techniques applicable for building NEMS, biosensors, nanomaterials, photonic crystals, and other novel devices and structures that will revolutionize society in the coming years.