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The effects of plastic deformation on band gap, electronic defect states  and lattice vibrations of rutile - ScienceDirect
The effects of plastic deformation on band gap, electronic defect states and lattice vibrations of rutile - ScienceDirect

Strain‐Induced Band‐Gap Tuning of 2D‐SnSSe Flakes for Application in  Flexible Sensors - Du - 2020 - Advanced Materials Technologies - Wiley  Online Library
Strain‐Induced Band‐Gap Tuning of 2D‐SnSSe Flakes for Application in Flexible Sensors - Du - 2020 - Advanced Materials Technologies - Wiley Online Library

Elastic and plastic deformation - YouTube
Elastic and plastic deformation - YouTube

A design strategy to match the band gap of periodic and aperiodic  metamaterials | Scientific Reports
A design strategy to match the band gap of periodic and aperiodic metamaterials | Scientific Reports

Crystals | Free Full-Text | Electronic and Optical Properties of  Dislocations in Silicon | HTML
Crystals | Free Full-Text | Electronic and Optical Properties of Dislocations in Silicon | HTML

Deformation behavior and band gap switching function of 4D printed  multi-stable metamaterials - ScienceDirect
Deformation behavior and band gap switching function of 4D printed multi-stable metamaterials - ScienceDirect

Band-Gap Deformation Potential and Elasticity Limit of Semiconductor  Free-Standing Nanorods Characterized in Situ by Scanning Electron  Microscope–Cathodoluminescence Nanospectroscopy | ACS Nano
Band-Gap Deformation Potential and Elasticity Limit of Semiconductor Free-Standing Nanorods Characterized in Situ by Scanning Electron Microscope–Cathodoluminescence Nanospectroscopy | ACS Nano

Soft phononic crystals with deformation-independent band gaps | Proceedings  of the Royal Society A: Mathematical, Physical and Engineering Sciences
Soft phononic crystals with deformation-independent band gaps | Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences

Band-Gap Deformation Potential and Elasticity Limit of Semiconductor  Free-Standing Nanorods Characterized in Situ by Scanning Electron  Microscope–Cathodoluminescence Nanospectroscopy | ACS Nano
Band-Gap Deformation Potential and Elasticity Limit of Semiconductor Free-Standing Nanorods Characterized in Situ by Scanning Electron Microscope–Cathodoluminescence Nanospectroscopy | ACS Nano

Plastic Deformation - Theory of Plastic Deformation
Plastic Deformation - Theory of Plastic Deformation

Nondestructive Evaluation Physics : Materials
Nondestructive Evaluation Physics : Materials

Metals | Free Full-Text | Tensile Behavior and Deformation Mechanism of  Fe-Mn-Al-C Low Density Steel with High Strength and High Plasticity | HTML
Metals | Free Full-Text | Tensile Behavior and Deformation Mechanism of Fe-Mn-Al-C Low Density Steel with High Strength and High Plasticity | HTML

Soft phononic crystals with deformation-independent band gaps | Proceedings  of the Royal Society A: Mathematical, Physical and Engineering Sciences
Soft phononic crystals with deformation-independent band gaps | Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences

Observation of tunable band gap and anisotropic Dirac semimetal state in  black phosphorus | Science
Observation of tunable band gap and anisotropic Dirac semimetal state in black phosphorus | Science

Variations of (a) strain energy and (b) band gaps of the CdS/germanene... |  Download Scientific Diagram
Variations of (a) strain energy and (b) band gaps of the CdS/germanene... | Download Scientific Diagram

Asymmetric 3D Elastic–Plastic Strain‐Modulated Electron Energy Structure in  Monolayer Graphene by Laser Shocking - Motlag - 2019 - Advanced Materials -  Wiley Online Library
Asymmetric 3D Elastic–Plastic Strain‐Modulated Electron Energy Structure in Monolayer Graphene by Laser Shocking - Motlag - 2019 - Advanced Materials - Wiley Online Library

Plastic Deformation - an overview | ScienceDirect Topics
Plastic Deformation - an overview | ScienceDirect Topics

Deep elastic strain engineering of bandgap through machine learning | PNAS
Deep elastic strain engineering of bandgap through machine learning | PNAS

Practical Maintenance » Blog Archive » Plastic Deformation and Fracture
Practical Maintenance » Blog Archive » Plastic Deformation and Fracture

Band gap - Wikipedia
Band gap - Wikipedia

Band-Gap Deformation Potential and Elasticity Limit of Semiconductor  Free-Standing Nanorods Characterized in Situ by Scanning Electron  Microscope–Cathodoluminescence Nanospectroscopy | ACS Nano
Band-Gap Deformation Potential and Elasticity Limit of Semiconductor Free-Standing Nanorods Characterized in Situ by Scanning Electron Microscope–Cathodoluminescence Nanospectroscopy | ACS Nano

Strain‐Induced Band‐Gap Tuning of 2D‐SnSSe Flakes for Application in  Flexible Sensors - Du - 2020 - Advanced Materials Technologies - Wiley  Online Library
Strain‐Induced Band‐Gap Tuning of 2D‐SnSSe Flakes for Application in Flexible Sensors - Du - 2020 - Advanced Materials Technologies - Wiley Online Library

Explain the mechanism of plastic deformation
Explain the mechanism of plastic deformation

Deep elastic strain engineering of bandgap through machine learning | PNAS
Deep elastic strain engineering of bandgap through machine learning | PNAS

Band-Gap Deformation Potential and Elasticity Limit of Semiconductor  Free-Standing Nanorods Characterized in Situ by Scanning Electron  Microscope–Cathodoluminescence Nanospectroscopy | ACS Nano
Band-Gap Deformation Potential and Elasticity Limit of Semiconductor Free-Standing Nanorods Characterized in Situ by Scanning Electron Microscope–Cathodoluminescence Nanospectroscopy | ACS Nano

Deep elastic strain engineering of bandgap through machine learning | PNAS
Deep elastic strain engineering of bandgap through machine learning | PNAS

Strain engineering of 2D semiconductors and graphene: from strain fields to  band-structure tuning and photonic applications | Light: Science &  Applications
Strain engineering of 2D semiconductors and graphene: from strain fields to band-structure tuning and photonic applications | Light: Science & Applications

Machine learning for deep elastic strain engineering of semiconductor  electronic band structure and effective mass | npj Computational Materials
Machine learning for deep elastic strain engineering of semiconductor electronic band structure and effective mass | npj Computational Materials