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Molecular Modeling and Multiscaling Issues for Electronic Material Applications: Volume 2

✍ Scribed by Artur Wymyslowski, Nancy Iwamoto, Matthew Yuen, Haibo Fan (eds.)


Publisher
Springer International Publishing
Year
2015
Tongue
English
Leaves
203
Edition
1
Category
Library

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✦ Synopsis


This book offers readers a snapshot of the progression of molecular modeling in the electronics industry and how molecular modeling is currently being used to understand materials to solve relevant issues in this field. The reader is introduced to the evolving role of molecular modeling, especially seen from the perspective of the IEEE community and modeling in electronics. This book also covers the aspects of molecular modeling needed to understand the relationship between structures and mechanical performance of materials. The authors also discuss the transitional topic of multiscale modeling and recent developments on the atomistic scale and current attempts to reach the submicron scale, as well as the role that quantum mechanics can play in performance prediction.

✦ Table of Contents


Front Matter....Pages i-x
Molecular Modeling of pH-Dependent Properties of Emeraldine Base Polyaniline for pH-Based Chemical Sensors....Pages 1-18
Two Approaches of Study Cu/Epoxy Interface Enhancement with Benzenethiol Promoter....Pages 19-28
Molecular Dynamics Simulation of Pore Formation Mechanism for Deposition of Poly(vinylidene fluoride-co-trifluoroethylene) on Gold Substrate....Pages 29-40
Microelectronics Packaging Materials: Investigating the Influence of Moisture by Molecular Dynamics Simulations....Pages 41-66
Analysis of the Adhesion Work with a Molecular Modeling Method and a Wetting Angle Measurement....Pages 67-79
Using Coarse-Grained Molecular Models (Molecular-Mesoscale) of a Copper Oxide-Epoxy Interface to Obtain Stress–Strain Failure Predictions Which Include Interfacial Roughness, Water and Filler Effects....Pages 81-132
Establishment of the Mesoscale Parameters for Separation: A Nonequilibrium Molecular Dynamics Model....Pages 133-148
Mechanics of Graphene and Carbon Nanotubes Under Uniaxial Compression and Tension....Pages 149-173
Analysis of an Influence of a Conversion Level on Simulation Results of the Crosslinked Polymers....Pages 175-194

✦ Subjects


Electronics and Microelectronics, Instrumentation; Continuum Mechanics and Mechanics of Materials; Optical and Electronic Materials; Nanoscale Science and Technology


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