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Compositional and structural engineering of inorganic nanowires toward  advanced properties and applications - Sun - 2019 - InfoMat - Wiley Online  Library
Compositional and structural engineering of inorganic nanowires toward advanced properties and applications - Sun - 2019 - InfoMat - Wiley Online Library

Electronic Structures of Free-Standing Nanowires made from Indirect Bandgap  Semiconductor Gallium Phosphide | Scientific Reports
Electronic Structures of Free-Standing Nanowires made from Indirect Bandgap Semiconductor Gallium Phosphide | Scientific Reports

Nanomaterials | Free Full-Text | Theoretical Study on Electronic, Magnetic  and Optical Properties of Non-Metal Atoms Adsorbed onto Germanium Carbide
Nanomaterials | Free Full-Text | Theoretical Study on Electronic, Magnetic and Optical Properties of Non-Metal Atoms Adsorbed onto Germanium Carbide

The theoretical direct-band-gap optical gain of Germanium nanowires |  Scientific Reports
The theoretical direct-band-gap optical gain of Germanium nanowires | Scientific Reports

Frontiers | Modelling Interfaces in Thin-Film Photovoltaic Devices
Frontiers | Modelling Interfaces in Thin-Film Photovoltaic Devices

Direct Band Gap Wurtzite Gallium Phosphide Nanowires | Nano Letters
Direct Band Gap Wurtzite Gallium Phosphide Nanowires | Nano Letters

Direct bandgap emission from strain-doped germanium | Nature Communications
Direct bandgap emission from strain-doped germanium | Nature Communications

a) XRD results for electrodeposited gallium-doped germanium on copper... |  Download Scientific Diagram
a) XRD results for electrodeposited gallium-doped germanium on copper... | Download Scientific Diagram

Direct Band Gap Wurtzite Gallium Phosphide Nanowires | Nano Letters
Direct Band Gap Wurtzite Gallium Phosphide Nanowires | Nano Letters

Direct Band Gap Wurtzite Gallium Phosphide Nanowires | Nano Letters
Direct Band Gap Wurtzite Gallium Phosphide Nanowires | Nano Letters

Synthesis of Polytypic Gallium Phosphide and Gallium Arsenide Nanowires and  Their Application as Photodetectors | ACS Omega
Synthesis of Polytypic Gallium Phosphide and Gallium Arsenide Nanowires and Their Application as Photodetectors | ACS Omega

The theoretical direct-band-gap optical gain of Germanium nanowires |  Scientific Reports
The theoretical direct-band-gap optical gain of Germanium nanowires | Scientific Reports

Direct Band Gap Wurtzite Gallium Phosphide Nanowires | Nano Letters
Direct Band Gap Wurtzite Gallium Phosphide Nanowires | Nano Letters

Effect of Titanium Induced Chemical Inhomogeneity on Crystal Structure,  Electronic Structure, and Optical Properties of Wide Band Gap Ga2O3 |  Crystal Growth & Design
Effect of Titanium Induced Chemical Inhomogeneity on Crystal Structure, Electronic Structure, and Optical Properties of Wide Band Gap Ga2O3 | Crystal Growth & Design

Direct-bandgap emission from hexagonal Ge and SiGe alloys | Nature
Direct-bandgap emission from hexagonal Ge and SiGe alloys | Nature

The theoretical direct-band-gap optical gain of Germanium nanowires |  Scientific Reports
The theoretical direct-band-gap optical gain of Germanium nanowires | Scientific Reports

Strain dependent electronic transport of pristine Si and Ge nanowires -  ScienceDirect
Strain dependent electronic transport of pristine Si and Ge nanowires - ScienceDirect

The theoretical direct-band-gap optical gain of Germanium nanowires |  Scientific Reports
The theoretical direct-band-gap optical gain of Germanium nanowires | Scientific Reports

The theoretical direct-band-gap optical gain of Germanium nanowires |  Scientific Reports
The theoretical direct-band-gap optical gain of Germanium nanowires | Scientific Reports

Gunn-Hilsum Effect in Mechanically Strained Silicon Nanowires: Tunable  Negative Differential Resistance | Scientific Reports
Gunn-Hilsum Effect in Mechanically Strained Silicon Nanowires: Tunable Negative Differential Resistance | Scientific Reports

a Raman spectra of a Ge-doped Ga2O3 structure from sample A (green) and...  | Download Scientific Diagram
a Raman spectra of a Ge-doped Ga2O3 structure from sample A (green) and... | Download Scientific Diagram

The theoretical direct-band-gap optical gain of Germanium nanowires |  Scientific Reports
The theoretical direct-band-gap optical gain of Germanium nanowires | Scientific Reports