Advances in Plasma Processes for Polymers II

Advances in Plasma Processes for Polymers II
Author: Choon-Sang Park
Publsiher: Mdpi AG
Total Pages: 0
Release: 2023-08-17
Genre: Technology & Engineering
ISBN: 3036586091

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This Special Issue aimed to compile original and cutting-edge research works in the fields of plasma process, polymerization, synthesis, characterization, treatment, modification, manufacturing, and applications of functional plasma-processed polymers.

Advances in Plasma Processes for Polymers

Advances in Plasma Processes for Polymers
Author: Choon-Sang Park
Publsiher: Unknown
Total Pages: 0
Release: 2022
Genre: Electronic Book
ISBN: 3036539158

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Plasma Processes and Polymers

Plasma Processes and Polymers
Author: Riccardo d'Agostino,Pietro Favia,Christian Oehr,Michael R. Wertheimer
Publsiher: John Wiley & Sons
Total Pages: 545
Release: 2006-03-06
Genre: Science
ISBN: 9783527605576

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This volume compiles essential contributions to the most innovative fields of Plasma Processes and Polymers. High-quality contributions cover the fields of plasma deposition, plasma treatment of polymers and other organic compounds, plasma processes under partial vacuum and at atmospheric pressure, biomedical, textile, automotive, and optical applications as well as surface treatment of bulk materials, clusters, particles and powders. This unique collection of refereed papers is based on the best contributions presented at the 16th International Symposium on Plasma Chemistry in Taormina, Italy (ISPC-16, June 2003). A high class reference of relevance to a large audience in plasma community as well as in the area of its industrial applications.

Plasma Polymerization Processes

Plasma Polymerization Processes
Author: Hynek Biederman,Yoshihito Osada
Publsiher: Elsevier Science & Technology
Total Pages: 228
Release: 1992
Genre: Science
ISBN: UOM:39015025197503

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The aim of this book is to show how to make useful plasma polymerization processes resulting in polymeric (organic) materials - usually thin films of the desirable properties. The main emphasis is on the detailed discussion of the deposition apparatus, deposition parameters and properties of the obtained films. The historical background and the processes related to plasma polymerization are discussed. Fundamentals of plasma physics and plasma chemistry are concisely reviewed and used as a base for the explanation of plasma polymerization principles and its models. Special attention is devoted to the real plasma polymerization reactors and various polymer film deposition arrangements. Many technical details are examined including the influence of process parameters on the properties of the resulting plasma polymers. New systems based on a microwave discharge are also described. The properties of the most important plasma polymers - plasma polymerized organosilicons, halocarbons and composite metal/plasma polymers are reviewed. Finally, the applications of plasma polymers are presented, e.g. for passivation and protective coatings, lithography and optical beam recording, electrophotography, microelectronics, modifications of conventional polymer surfaces - biomedical uses, membranes, etc. Future prospects and developments in plasma polymerization e.g. for molecular electronics and other areas are also outlined.

The Plasma Chemistry of Polymer Surfaces

The Plasma Chemistry of Polymer Surfaces
Author: Jörg Friedrich
Publsiher: John Wiley & Sons
Total Pages: 479
Release: 2012-05-29
Genre: Technology & Engineering
ISBN: 9783527318537

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More than 99% of all visible matter in the universe occurs as highly ionized gas plasma with high energy content. Electrical low- and atmospheric-pressure plasmas are characterized by continuous source of moderate quantities of energy or enthalpy transferred predominantly as kinetic energy of electrons. Therefore, such energetically unbalanced plasmas have low gas temperature but produce sufficient energy for inelastic collisions with atoms and molecules in the gas phase, thus producing reactive species and photons, which are able to initiate all types of polymerizations or activate any surface of low reactive polymers. However, the broadly distributed energies in the plasma exceed partially the binding energies in polymers, thus initiating very often unselective reactions and polymer degradation. The intention of this book is to present new plasma processes and new plasma reactions of high selectivity and high yield. This book aims to bridge classical and plasma chemistry, particularly focusing on polymer chemistry in the bulk and on the surface under plasma exposure. The stability of surface functionalization and the qualitative and quantitative measurement of functional groups at polymer surface are featured prominently, and chemical pathways for suppressing the undesirable side effects of plasma exposure are proposed and illustrated with numerous examples. Special attention is paid to the smooth transition from inanimate polymer surfaces to modified bioactive polymer surfaces. A wide range of techniques, plasma types and applications are demonstrated.

Advanced Plasma Technology

Advanced Plasma Technology
Author: Riccardo d'Agostino,Pietro Favia,Yoshinobu Kawai,Hideo Ikegami,Noriyoshi Sato,Farzaneh Arefi-Khonsari
Publsiher: John Wiley & Sons
Total Pages: 479
Release: 2008-09-08
Genre: Science
ISBN: 9783527622191

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A panel of internationally renowned scientists discuss the latest results in plasma technology. This volume has been compiled with both a didactic approach and an overview of the newest achievements for industrial applications. It is divided into two main sections. One is focused on fundamental technology, including plasma production and control, high-pressure discharges, modeling and simulation, diagnostics, dust control, and etching. The section on application technology covers polymer treatments, silicon solar cell, coating and spray, biomaterials, sterilization and waste treatment, plasma propulsion, plasma display panels, and anti-corrosion coatings. The result is an indispensable work for physicists, chemists and engineers involved in the field of plasma technology.

Advances in Plasma Treatment of Textile Surfaces

Advances in Plasma Treatment of Textile Surfaces
Author: Shahid Ul Islam,Aminoddin Haji
Publsiher: Elsevier
Total Pages: 416
Release: 2024-01-24
Genre: Technology & Engineering
ISBN: 9780443190803

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Advances in Plasma Treatment of Textile Surfaces offers a detailed overview on the use of plasma in natural and synthetic textiles, and also explores recent applications in technical textiles including composites, ballistic performance, functionalization and textile wastewater treatment. This promising technology can alter the surface properties of textiles without having a significant effect on their bulk properties, leading to potential improvements to the scouring, de-sizing, dyeing, finishing, printing, and laminating processes among others. Drawing on an international team of contributors from industry as well as academia, this important book is bringing these innovative sustainable plasma treatments to textile and polymer scientists everywhere working in the field of textile functionalization. Provides detailed technical descriptions of cutting-edge applications of plasma in nanotechnology, biotechnology, and other fields Describes the different kinds of plasma treatment equipment and compares their use for different effects Starts with overviews of basic information such as how to determine surface properties

Advanced Aspects of Spectroscopy

Advanced Aspects of Spectroscopy
Author: Muhammad Akhyar Farrukh
Publsiher: BoD – Books on Demand
Total Pages: 551
Release: 2012-08-29
Genre: Technology & Engineering
ISBN: 9789535107156

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Spectroscopy is the study of absorption and emission of electromagnetic radiation due to the interaction between matter and energy that energy depends on the specific wavelength of electromagnetic radiation. This field has proven invaluable research tool in a number of areas including chemistry, physics, biology, medicine and ecology. The spectroscopic field of research is growing day-by-day and scientists are exploring new areas in this field by introducing new techniques. The main purpose of this book is to highlight these new spectroscopic techniques like Magnetic Induction Spectroscopy, Laser-Induced Breakdown Spectroscopy, X-ray Photoelectron Spectroscopy, Low Energy Electron Loss Spectroscopy, Micro- to Macro-Raman Spectroscopy, Liquid-Immersion Raman Spectroscopy, High-Resolution Magic Angle Spinning (HR-MAS) Nuclear Magnetic Resonance (NMR) Spectroscopy, Injection and Optical Spectroscopy, and Nano Spectroscopy. This book is divided into five sections including General Spectroscopy, Advanced Spectroscopy, Nano Spectroscopy, Organic Spectroscopy, and Physical Spectroscopy which cover topics from basic to advanced levels which will provide a good source of learning for teaching and research purposes.