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Metallized Plastics 2

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Cover of 'Metallized Plastics 2'

Table of Contents

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    Book Overview
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    Chapter 1 An Electrochemical Method of Polyimide Metallization
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    Chapter 2 Electroplating of Polymers, Gas Permeability and Adhesion of the Composite Materials
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    Chapter 3 Molecular Level Metal and Ceramic/Polymer Composites: Synthesis of Metal and Metal Oxide Containing Polyimides and its Relevance to Polymer Metallization
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    Chapter 4 Photolithographic Plating of Platinum and Copper on Insulating Substrates
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    Chapter 5 Metallized Indium Island Films for Flexible Automotive Trim
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    Chapter 6 Metallization of Plastics by Physical Vapor Deposition Techniques
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    Chapter 7 Ion Beam Assisted Metallization of Plastics
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    Chapter 8 Plasma Induced Deposition of Copper Films on Polymer Surfaces
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    Chapter 9 Metallization of Polytetrafluoroethylene (PTFE) by Means of Plasma-Enhanced Chemical Vapour Deposition
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    Chapter 10 Metallization of Plastics Via Low Temperature Arc Vapor Deposition (LTAVD)
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    Chapter 11 Magnetron Sputtered Tin Hard Coatings on Plastics
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    Chapter 12 Diffusion and Gettering Simulations of Ion Implanted Copper in Polyimide
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    Chapter 13 Comparison Between the Interfacial Chemistry of Metallized Polyimides and Polyimide Films on Bulk Metal Substrates
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    Chapter 14 Chemical Interactions at Polymer-Metal Interfaces of Interest to Microelectronics
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    Chapter 15 Photoelectron Spectroscopy Model Study of the Interface Between Polyimide and Copper
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    Chapter 16 Electronic Structure of Metal/Polymer Interfaces: Aluminum on Conjugated Polymers
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    Chapter 17 Study of Chemical Interactions in Metallized Polymers Used for Microelectronic Packaging
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    Chapter 18 XPS Study of the Interface Between Thermally Evaporated Aluminium and Polyethyleneterephthalate: Evidence for Oxycarbide Species
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    Chapter 19 XPS-Study of Metal-Polymer Interfaces After Polymer Surface Treatment by Ion and Plasma Techniques
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    Chapter 20 Behavior of Metal — Polyimide Interfaces Under Degradative Ambients
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    Chapter 21 Study of Titanium/Polyimide Interface in a Reducing Environment
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    Chapter 22 Ion Beam Induced Chemical Reactions at Polymer Surfaces
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    Chapter 23 Surface Pre-treatment and Metal Coating of Commercial Polyimide Studied by Surface Analytical Techniques
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    Chapter 24 Characterization of a Surface Chemically-Modified Polyimide
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    Chapter 25 Diffusion of Ions in a Surface Chemically-Modified Polyimide
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    Chapter 26 Modification of Polymer Surfaces by Dual Frequency Plasma
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    Chapter 27 Electrochemical Reduction of PMDA-ODA and its Effect on Metal/Polyimide Interfacial Reliability
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    Chapter 28 Sticky Polymers Through Ion Beam Processing
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    Chapter 29 Molecular Dynamic Phenomena at Polymer Surfaces and Their Relevance to Polymer Adhesion Behavior
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    Chapter 30 Enhanced Metal/Polymer Adhesion by Ion Assisted Deposition
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    Chapter 31 An Improved Process to Facilitate the Chemical Bonding of Electroless Copper to Polyetherimide Surfaces
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    Chapter 32 Adherent Electroless Copper Layers on Polystyrene
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    Chapter 33 Correlation Between Surface Chemistry of Polycarbonate and its Adhesion Behavior to Electrolessly Plated Copper
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    Chapter 34 Water-Induced Degradation of Metal/Polyimide Interfaces
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    Chapter 35 Thin Film Adhesion Measurement Using Excimer Laser Ablation and Tensile Extension Tests
Attention for Chapter 6: Metallization of Plastics by Physical Vapor Deposition Techniques
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Chapter title
Metallization of Plastics by Physical Vapor Deposition Techniques
Chapter number 6
Book title
Metallized Plastics 2
Published by
Springer, Boston, MA, January 1991
DOI 10.1007/978-1-4899-0735-6_6
Book ISBNs
978-1-4899-0737-0, 978-1-4899-0735-6

C. T. Wan, K. A. Taylor, D. L. Chambers, G. T. Susi

Mendeley readers

The data shown below were compiled from readership statistics for 1 Mendeley reader of this research output. Click here to see the associated Mendeley record.

Geographical breakdown

Country Count As %
Unknown 1 100%

Demographic breakdown

Readers by professional status Count As %
Student > Ph. D. Student 1 100%
Readers by discipline Count As %
Chemistry 1 100%