Hany Aziz

Hany Aziz

University of Waterloo

H-index: 52

North America-Canada

About Hany Aziz

Hany Aziz, With an exceptional h-index of 52 and a recent h-index of 27 (since 2020), a distinguished researcher at University of Waterloo, specializes in the field of Organic Electronics, OLEDs, Organic Photovoltaics, Quantum dot LEDs.

His recent articles reflect a diverse array of research interests and contributions to the field:

Differences in Spontaneous Electron Transfer in Red, Green, and Blue Quantum Dot Light-Emitting Devices and Its Benefits for Electroluminescence Efficiency

Differences in Electron and Hole Injection and Auger Recombination between Red, Green, and Blue CdSe-Based Quantum Dot Light Emitting Devices

Changes in Hole and Electron Injection under Electrical Stress and the Rapid Electroluminescence Loss in Blue Quantum‐Dot Light‐Emitting Devices

Lifetime enhancement in QDLEDs via an electron-blocking hole transport layer

Process for the halogen treatment of metal oxide layers

Suppressing Degradation in QLEDs via Doping ZnO Electron Transport Layer by Halides

Influence of Encapsulation on the Efficiency and Positive Aging Behavior in Blue Quantum Dot Light-Emitting Devices

Inverted solution-processed quantum dot light-emitting devices with wide band gap quantum dot interlayers

Hany Aziz Information

University

Position

Professor at the Canada

Citations(all)

10499

Citations(since 2020)

2598

Cited By

9131

hIndex(all)

52

hIndex(since 2020)

27

i10Index(all)

158

i10Index(since 2020)

74

Email

University Profile Page

Google Scholar

Hany Aziz Skills & Research Interests

Organic Electronics

OLEDs

Organic Photovoltaics

Quantum dot LEDs

Top articles of Hany Aziz

Differences in Spontaneous Electron Transfer in Red, Green, and Blue Quantum Dot Light-Emitting Devices and Its Benefits for Electroluminescence Efficiency

ACS Applied Optical Materials

2024/3/1

Mohsen Azadinia
Mohsen Azadinia

H-Index: 3

Hany Aziz
Hany Aziz

H-Index: 29

Differences in Electron and Hole Injection and Auger Recombination between Red, Green, and Blue CdSe-Based Quantum Dot Light Emitting Devices

ACS nano

2024/1/4

Mohsen Azadinia
Mohsen Azadinia

H-Index: 3

Hany Aziz
Hany Aziz

H-Index: 29

Changes in Hole and Electron Injection under Electrical Stress and the Rapid Electroluminescence Loss in Blue Quantum‐Dot Light‐Emitting Devices

Small

2024/1

Hany Aziz
Hany Aziz

H-Index: 29

Lifetime enhancement in QDLEDs via an electron-blocking hole transport layer

Scientific Reports

2023/10/31

Mohsen Azadinia
Mohsen Azadinia

H-Index: 3

Hany Aziz
Hany Aziz

H-Index: 29

Process for the halogen treatment of metal oxide layers

2023/10/5

Suppressing Degradation in QLEDs via Doping ZnO Electron Transport Layer by Halides

Advanced Optical Materials

2023/10

Hany Aziz
Hany Aziz

H-Index: 29

Influence of Encapsulation on the Efficiency and Positive Aging Behavior in Blue Quantum Dot Light-Emitting Devices

ACS Applied Materials & Interfaces

2023/7/8

Inverted solution-processed quantum dot light-emitting devices with wide band gap quantum dot interlayers

ACS Applied Materials & Interfaces

2023/5/4

Long-term spontaneous negative aging behavior of encapsulated blue quantum dot light emitting devices: the influence of the hole transport material

Journal of Materials Chemistry C

2023

Significant lifetime enhancement in QLEDs by reducing interfacial charge accumulation via fluorine incorporation in the ZnO electron transport layer

Nano-Micro Letters

2022/12

Tyler Davidson-Hall
Tyler Davidson-Hall

H-Index: 6

Hany Aziz
Hany Aziz

H-Index: 29

Stability improvement in quantum-dot light-emitting devices via a new robust hole transport layer

The Journal of Physical Chemistry C

2022/10/13

Mohsen Azadinia
Mohsen Azadinia

H-Index: 3

Hany Aziz
Hany Aziz

H-Index: 29

The influence of charge transport layers on the EL stability of QDLEDs (Conference Presentation)

2022/10/3

Modulation in charge distribution via polyethylenimine-incorporation into ZnO electron transport layer and its impact on quantum-dots light emitting device stability

2022/10/3

Hany Aziz
Hany Aziz

H-Index: 29

Highly sensitive and fully printable humidity sensor on a flexible substrate based on a zinc oxide and polyethylenimine composite

Flexible and Printed Electronics

2022/9/19

The Root Causes of the Limited Electroluminescence Stability of Solution-Coated Versus Vacuum-Deposited Small-Molecule OLEDs: A Mini-Review

2022/4/8

Hany Aziz
Hany Aziz

H-Index: 29

Role of guest materials in the lower stability of solution-coated versus vacuum-deposited phosphorescent OLEDs

ACS Applied Materials & Interfaces

2022/2/4

Hany Aziz
Hany Aziz

H-Index: 29

The use of green‐solvent processable molecules with large dipole moments in the electron extraction layer of inverted organic solar cells as a universal route for enhancing …

Advanced Sustainable Systems

2022/2

Host-to-guest energy transfer and its role in the lower stability of solution-coated versus vacuum-deposited phosphorescent OLEDs

The Journal of Physical Chemistry C

2021/9/1

The potential benefits of polyethylenimine as an electron extraction layer for facilitating the manufacturing of inverted organic solar cells

2021/8/4

The influence of charge carriers in the hole transport layer on stability of quantum dot light-emitting devices

2021/8/1

Tyler Davidson-Hall
Tyler Davidson-Hall

H-Index: 6

Hany Aziz
Hany Aziz

H-Index: 29

See List of Professors in Hany Aziz University(University of Waterloo)

Co-Authors

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