Onur Erdem

Onur Erdem

Universiteit Gent

H-index: 17

Europe-Belgium

About Onur Erdem

Onur Erdem, With an exceptional h-index of 17 and a recent h-index of 17 (since 2020), a distinguished researcher at Universiteit Gent, specializes in the field of FRET, time-resolved fluorescence spectroscopy, self-assembly, optical gain.

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

Understanding the suitable alloying conditions for highly efficient Cu-and Mn-doped Zn1-xCdxS/ZnS core-shell quantum dots

Highly‐Directional, Highly‐Efficient Solution‐Processed Light‐Emitting Diodes of All‐Face‐Down Oriented Colloidal Quantum Well Self‐Assembly

Quantum Dot Patterning and Encapsulation by Maskless Lithography for Display Technologies

Oriented Self-assembly of Colloidal Semiconductor Nanoplatelets on Liquid Interfaces: Methods and Applications

Observation of optical gain from aqueous quantum well heterostructures in water

Cyan Emission in Two-Dimensional Colloidal Cs2CdCl4:Sb3+ Ruddlesden–Popper Phase Nanoplatelets

Near‐Field Energy Transfer into Silicon Inversely Proportional to Distance Using Quasi‐2D Colloidal Quantum Well Donors

Self-Resonant Microlasers of Colloidal Quantum Wells Constructed by Direct Deep Patterning

Onur Erdem Information

University

Position

___

Citations(all)

1075

Citations(since 2020)

926

Cited By

467

hIndex(all)

17

hIndex(since 2020)

17

i10Index(all)

19

i10Index(since 2020)

19

Email

University Profile Page

Google Scholar

Onur Erdem Skills & Research Interests

FRET

time-resolved fluorescence spectroscopy

self-assembly

optical gain

Top articles of Onur Erdem

Understanding the suitable alloying conditions for highly efficient Cu-and Mn-doped Zn1-xCdxS/ZnS core-shell quantum dots

Optical Materials

2023/11/1

Highly‐Directional, Highly‐Efficient Solution‐Processed Light‐Emitting Diodes of All‐Face‐Down Oriented Colloidal Quantum Well Self‐Assembly

Small

2023/7

Quantum Dot Patterning and Encapsulation by Maskless Lithography for Display Technologies

ACS Applied Materials & Interfaces

2023/2/9

Oriented Self-assembly of Colloidal Semiconductor Nanoplatelets on Liquid Interfaces: Methods and Applications

2022/10/27

Onur Erdem
Onur Erdem

H-Index: 11

Hilmi Volkan Demir
Hilmi Volkan Demir

H-Index: 51

Observation of optical gain from aqueous quantum well heterostructures in water

Nanoscale

2022

Cyan Emission in Two-Dimensional Colloidal Cs2CdCl4:Sb3+ Ruddlesden–Popper Phase Nanoplatelets

ACS nano

2021/10/20

Near‐Field Energy Transfer into Silicon Inversely Proportional to Distance Using Quasi‐2D Colloidal Quantum Well Donors

Small

2021/10

Onur Erdem
Onur Erdem

H-Index: 11

Hilmi Volkan Demir
Hilmi Volkan Demir

H-Index: 51

Self-Resonant Microlasers of Colloidal Quantum Wells Constructed by Direct Deep Patterning

Nano Letters

2021/5/24

Onur Erdem
Onur Erdem

H-Index: 11

Hilmi Volkan Demir
Hilmi Volkan Demir

H-Index: 51

Single‐Mode Lasing from a Single 7 nm Thick Monolayer of Colloidal Quantum Wells in a Monolithic Microcavity

Laser & Photonics Reviews

2021/4

Onur Erdem
Onur Erdem

H-Index: 11

Hilmi Volkan Demir
Hilmi Volkan Demir

H-Index: 51

Mechanosynthesis of polymer-stabilized lead bromide perovskites: insight into the formation and phase conversion of nanoparticles

Nano Research

2021/4

Light-Induced Paramagnetism in Colloidal Ag+-Doped CdSe Nanoplatelets

The Journal of Physical Chemistry Letters

2021/3/16

Optical Microfluidic Waveguides and Solution Lasers of Colloidal Semiconductor Quantum Wells

Advanced Materials

2021/1/25

Onur Erdem
Onur Erdem

H-Index: 11

Hilmi Volkan Demir
Hilmi Volkan Demir

H-Index: 51

Ultrahigh Green and Red Optical Gain Cross Sections from Solutions of Colloidal Quantum Well Heterostructures

The Journal of Physical Chemistry Letters

2021/2/25

Photoluminescent polarizers having metal film with surface plasmon coupling and electronic devices including the same

2020/11/3

Optical Gain in Ultrathin Self‐Assembled Bi‐Layers of Colloidal Quantum Wells Enabled by the Mode Confinement in their High‐Index Dielectric Waveguides

Small

2020/11

Onur Erdem
Onur Erdem

H-Index: 11

Hilmi Volkan Demir
Hilmi Volkan Demir

H-Index: 51

Thickness-Tunable Self-Assembled Colloidal Nanoplatelet Films Enable Ultrathin Optical Gain Media

Nano Letters

2020/7/31

Onur Erdem
Onur Erdem

H-Index: 11

Hilmi Volkan Demir
Hilmi Volkan Demir

H-Index: 51

Colloidal Optoelectronics of Self-Assembled Quantum Well Superstructures

2020

Onur Erdem
Onur Erdem

H-Index: 11

See List of Professors in Onur Erdem University(Universiteit Gent)

Co-Authors

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