Low temperature plasma technology : methods and applications

著者

書誌事項

Low temperature plasma technology : methods and applications

edited by Paul K. Chu, XinPei Lu

CRC Press, c2014

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注記

Includes bibliographical references (p. 464-473) and index

内容説明・目次

内容説明

Written by a team of pioneering scientists from around the world, Low Temperature Plasma Technology: Methods and Applications brings together recent technological advances and research in the rapidly growing field of low temperature plasmas. The book provides a comprehensive overview of related phenomena such as plasma bullets, plasma penetration into biofilms, discharge-mode transition of atmospheric pressure plasmas, and self-organization of microdischarges. It describes relevant technology and diagnostics, including nanosecond pulsed discharge, cavity ringdown spectroscopy, and laser-induced fluorescence measurement, and explores the increasing research on atmospheric pressure nonequilibrium plasma jets. The authors also discuss how low temperature plasmas are used in the synthesis of nanomaterials, environmental applications, the treatment of biomaterials, and plasma medicine. This book provides a balanced and thorough treatment of the core principles, novel technology and diagnostics, and state-of-the-art applications of low temperature plasmas. It is accessible to scientists and graduate students in low-pressure plasma physics, nanotechnology, plasma medicine, and materials science. The book is also suitable as an advanced reference for senior undergraduate students.

目次

Fundamentals: Introduction. Atmospheric Pressure Plasmas. Processing and Characterization: Modeling of Low-Pressure Plasmas. Modeling of Atmospheric Pressure Plasmas. High-Pressure Microcavity Discharges. Atmospheric Pressure Nanosecond Pulsed Discharge Plasmas. On Atmospheric Pressure Nonequilibrium Plasma Jets. Cavity Ringdown Spectroscopy of Plasma Species. Laser-Induced Fluorescence Methods for Transient Species Detection in High-Pressure Discharges. Applications: Plasma Technology in Silicon Photovoltaics. Environmental Applications of Plasmas. Assessment of Potential Applications of Plasma with Liquid Water. Plasma-Assisted Surface Modification of Polymeric Biomaterials. Emerging Applications of Plasmas in Medicine: Fashion versus Efficacy. Plasma Surface Engineering of Titanium-Based Materials for Osteointegration. Index.

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