Basic Principles of Nanotechnology

Nonfiction, Science & Nature, Technology, Electricity, Science, Chemistry, General Chemistry, Physics, General Physics
Cover of the book Basic Principles of Nanotechnology by Wesley C. Sanders, CRC Press
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Author: Wesley C. Sanders ISBN: 9781351054409
Publisher: CRC Press Publication: July 11, 2018
Imprint: CRC Press Language: English
Author: Wesley C. Sanders
ISBN: 9781351054409
Publisher: CRC Press
Publication: July 11, 2018
Imprint: CRC Press
Language: English

The book allows the reader to have a basic understanding of the structure and properties of nanoscale materials routinely used in nanotechnology-based research and industries. To add, the book describes the operation of nanoscale transistors and the processes used to fabricate the devices. Additionally, it presents research involving the use of carbon nanotubes, graphene, and molecules to create non-silicon based electronic devices. It aims to provide an understanding of the operation of the most frequently used fabrication and characterization procedures, such as scanning electron microscopy, atomic force microscopy, etch, e-beam lithography, and photolithography.

  • Provides explanations of the common techniques used in nanofabrication.
  • Focuses on nanomaterials that are almost exclusively used in academic research and incorporated in consumer materials, such as carbon nanotubes, graphene, metal nanoparticles, quantum dots, and conductive polymers.
  • Each chapter begins with a list of key objectives describing major content covered.
  • Includes end-of-chapter questions to reinforce chapter content.
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The book allows the reader to have a basic understanding of the structure and properties of nanoscale materials routinely used in nanotechnology-based research and industries. To add, the book describes the operation of nanoscale transistors and the processes used to fabricate the devices. Additionally, it presents research involving the use of carbon nanotubes, graphene, and molecules to create non-silicon based electronic devices. It aims to provide an understanding of the operation of the most frequently used fabrication and characterization procedures, such as scanning electron microscopy, atomic force microscopy, etch, e-beam lithography, and photolithography.

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