Hybrid Atomic-Scale Interface Design for Materials Functionality
- 1st Edition - March 10, 2021
- Latest edition
- Editor: Ajit K. Roy
- Language: English
Hybrid Atomic-Scale Interface Design for Materials Functionality covers a broad range of atomistic, meso and macro scale computational methodologies, including multiphase (hybrid)… Read more
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Description
Description
Key features
Key features
- Presents computational methodologies for materials hybridization and interface design at the atomic scale
- Covers materials interface design (atomic configuration), a key component to optimize and achieve performance metrics
- Helps readers with material selectivity and in the materials design phase of any product design
Readership
Readership
Graduate students or senior undergraduates majoring in materials science and engineering
Table of contents
Table of contents
1. Introduction to hybrid materials design issues and challenges for micro devices
2. Molecular Dynamics (MD) methodologies for predicting thermal transport in aerospace (cross-linked) polymers
3. Electron transport through nanomaterials interfaces
4. Wave Packets MD
5. Molecular Mechanics (MM) for materials interface strength
6. Kapitza resistance in lattice structures
7. Porous hybrid nano materials: processing, characterization and materials properties
8. Nano-porous graphitic carbon for super capacitors
9. Nano-porous carbon for hydrogen storage
10. Laser induced nano materials processing
11. Nano materials interface strength measurements
12. Combined thermal-mechanical micro measurement
Product details
Product details
- Edition: 1
- Latest edition
- Published: March 10, 2021
- Language: English
About the editor
About the editor
AR