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a Schematic diagram of the conventional GaN-based LED structure... |  Download Scientific Diagram
a Schematic diagram of the conventional GaN-based LED structure... | Download Scientific Diagram

A Seriously High-Power Gallium Nitride Diode | Engineering.com
A Seriously High-Power Gallium Nitride Diode | Engineering.com

Vertical GaN-on-GaN Schottky Barrier Diodes With Multi-Floating Metal Rings
Vertical GaN-on-GaN Schottky Barrier Diodes With Multi-Floating Metal Rings

Obliterating dynamic on-resistance degradation - News
Obliterating dynamic on-resistance degradation - News

Electrical properties and carrier transport mechanism in V/p-GaN Schottky  diode at high temperature range - ScienceDirect
Electrical properties and carrier transport mechanism in V/p-GaN Schottky diode at high temperature range - ScienceDirect

Rounding Up Schottky Barrier Diode's Exploits With Wide Bandgap Materials -  News
Rounding Up Schottky Barrier Diode's Exploits With Wide Bandgap Materials - News

Electrical characterization of the Mg implanted GaN p-i-n diode. (a)... |  Download Scientific Diagram
Electrical characterization of the Mg implanted GaN p-i-n diode. (a)... | Download Scientific Diagram

PTC Website
PTC Website

GaN-Based Schottky Diode | IntechOpen
GaN-Based Schottky Diode | IntechOpen

Electronics | Free Full-Text | Device Design Assessment of GaN Merged P-i-N  Schottky Diodes
Electronics | Free Full-Text | Device Design Assessment of GaN Merged P-i-N Schottky Diodes

Medium-Voltage Multi-Channel AlGaN/GaN Power Schottky Barrier Diodes
Medium-Voltage Multi-Channel AlGaN/GaN Power Schottky Barrier Diodes

Embedding diodes in normally-off GaN transistors
Embedding diodes in normally-off GaN transistors

Semiconductor–Insulator–Semiconductor Diode Consisting of Monolayer MoS2,  h-BN, and GaN Heterostructure | ACS Nano
Semiconductor–Insulator–Semiconductor Diode Consisting of Monolayer MoS2, h-BN, and GaN Heterostructure | ACS Nano

Improved performance in vertical GaN Schottky diode assisted by AlGaN  tunneling barrier: Applied Physics Letters: Vol 108, No 11
Improved performance in vertical GaN Schottky diode assisted by AlGaN tunneling barrier: Applied Physics Letters: Vol 108, No 11

Study of a GaN Schottky diode based hydrogen sensor with a hydrogen  peroxide oxidation approach and platinum catalytic metal - ScienceDirect
Study of a GaN Schottky diode based hydrogen sensor with a hydrogen peroxide oxidation approach and platinum catalytic metal - ScienceDirect

Structure of the Al0.27Ga0.73N/GaN diode under study. | Download Scientific  Diagram
Structure of the Al0.27Ga0.73N/GaN diode under study. | Download Scientific Diagram

Conductivity Modulation in Vertical GaN PiN Diode - News
Conductivity Modulation in Vertical GaN PiN Diode - News

Gallium nitride vertical junction barrier Schottky diodes
Gallium nitride vertical junction barrier Schottky diodes

Graphene-GaN Schottky diodes | SpringerLink
Graphene-GaN Schottky diodes | SpringerLink

Crystals | Free Full-Text | The Study of High Breakdown Voltage Vertical GaN -on-GaN p-i-n Diode with Modified Mesa Structure
Crystals | Free Full-Text | The Study of High Breakdown Voltage Vertical GaN -on-GaN p-i-n Diode with Modified Mesa Structure

Increasing GaN Schottky diode breakdown voltage with recessed double-field  plate anode
Increasing GaN Schottky diode breakdown voltage with recessed double-field plate anode

Improving Ni/GaN Schottky diode performance through interfacial passivation  layer formed via ultraviolet/ozone treatment - ScienceDirect
Improving Ni/GaN Schottky diode performance through interfacial passivation layer formed via ultraviolet/ozone treatment - ScienceDirect

Light-emitting diodes with surface gallium nitride p–n homojunction  structure formed by selective area regrowth | Scientific Reports
Light-emitting diodes with surface gallium nitride p–n homojunction structure formed by selective area regrowth | Scientific Reports

Review of Recent Progress on Vertical GaN-Based PN Diodes | SpringerLink
Review of Recent Progress on Vertical GaN-Based PN Diodes | SpringerLink