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Viser: Plasma Processing of Nanomaterials

Plasma Processing of Nanomaterials

Plasma Processing of Nanomaterials

R. Mohan Sankaran
(2017)
Sprog: Engelsk
CRC Press LLC
876,00 kr.
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Detaljer om varen

  • Paperback: 432 sider
  • Udgiver: CRC Press LLC (Marts 2017)
  • ISBN: 9781138077430

We are at a critical evolutionary juncture in the research and development of low-temperature plasmas, which have become essential to synthesizing and processing vital nanoscale materials. More and more industries are increasingly dependent on plasma technology to develop integrated small-scale devices, but physical limits to growth, and other challenges, threaten progress.

Plasma Processing of Nanomaterials is an in-depth guide to the art and science of plasma-based chemical processes used to synthesize, process, and modify various classes of nanoscale materials such as nanoparticles, carbon nanotubes, and semiconductor nanowires. Plasma technology enables a wide range of academic and industrial applications in fields including electronics, textiles, automotives, aerospace, and biomedical. A prime example is the semiconductor industry, in which engineers revolutionized microelectronics by using plasmas to deposit and etch thin films and fabricate integrated circuits.

An overview of progress and future potential in plasma processing, this reference illustrates key experimental and theoretical aspects by presenting practical examples of:

  • Nanoscale etching/deposition of thin films
  • Catalytic growth of carbon nanotubes and semiconductor nanowires
  • Silicon nanoparticle synthesis
  • Functionalization of carbon nanotubes
  • Self-organized nanostructures

 

Significant advances are expected in nanoelectronics, photovoltaics, and other emerging fields as plasma technology is further optimized to improve the implementation of nanomaterials with well-defined size, shape, and composition. Moving away from the usual focus on wet techniques embraced in chemistry and physics, the author sheds light on pivotal breakthroughs being made by the smaller plasma community. Written for a diverse audience working in fields ranging from nanoelectronics and energy sensors to catalysis and nanomedicine, this resource will help readers improve development and application of nanomaterials in their own work.


About the Author:

R. Mohan Sankaran received the American Vacuum Society's 2011 Peter Mark Memorial Award for his outstanding contributions to tandem plasma synthesis.

Nanoscale Etching and Deposition, N. Marchack and J.P. Chang Extreme Ultraviolet Light Lithography for Producing Nanofeatures in Next-Generation Semiconductor Processing, J. Sporre and D.N. Ruzic Nonthermal Plasma Synthesis of Semiconductor Nanocrystals, U. Kortshagen and L. Mangolini Microscale Plasmas for Metal and Metal Oxide Nanoparticle Synthesis, D. Mariotti and R. Mohan Sankaran Large-Scale, Plasma-Assisted Growth of Nanowires, U. Cvelbar and M.K. Sunkara Cathodic Arc Discharge for Synthesis of Carbon Nanoparticles, M. Chhowalla and H. Emrah Unalan Atmospheric Plasmas for Carbon Nanotubes (CNTs), J. Beom Park, S.J. Kyung, and G. Young Yeom Structural Control of Single-Walled Carbon Nanotubes by Plasma Chemical Vapor Deposition, R. Hatakeyama and T. Kato Graphene Growth by Plasma-Enhanced Chemical Vapor Deposition (PECVD), M. Meyyappan and J.-S. Lee Modeling Aspects of Plasma-Enhanced Chemical Vapor Deposition of Carbon-Based Materials, E. Neyts, M. Mao, M. Eckert, and A. Bogaerts Modeling Catalytic Growth of One-Dimensional Nanostructures, E. Tam, K. Ostrikov, and T. Murphy Diagnostics of Energy Fluxes in Dusty Plasmas, H.R. Maurer and H. Kersten Selective Functionalization and Modification of Carbon Nanomaterials by Plasma Techniques, Y. Xu and L. Dai Plasma-Liquid Interactions for Fabrication of Nanobiomaterials, T. Kaneko and R Hatakeyama Assembly and Self-Organization of Nanomaterials, A.E. Rider and K. Ostrikov
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