Quantum Dot Light-Emitting Devices: Beyond Alignment of Energy Levels (original) (raw)

High-performance quantum dot light-emitting diodes with hybrid hole transport layer via doping engineering

Yunzhou Deng

Optics express, 2016

View PDFchevron_right

Efficiency enhancement of green quantum-dot light-emitting diode with novel hole-transporting material

Bo-Yen Lin

2021

View PDFchevron_right

Over 30% External Quantum Efficiency Light‐Emitting Diodes by Engineering Quantum Dot‐Assisted Energy Level Match for Hole Transport Layer

Ouyang Wang

Advanced Functional Materials, 2019

View PDFchevron_right

Molecular Doping of the Hole-Transporting Layer for Efficient, Single-Step-Deposited Colloidal Quantum Dot Photovoltaics

James Fan, A. Kirmani

ACS Energy Letters, 2017

View PDFchevron_right

High-performance green and blue quantum-dot light-emitting diodes with eliminated charge leakage

Yunzhou Deng

2021

View PDFchevron_right

Hybrid Quantum Dot Light-Emitting Diodes: Design, Fabrication, and Characterization

Ten-Chin Wen, Tzung-Fang Guo

2008 IEEE PhotonicsGlobal@Singapore, 2008

View PDFchevron_right

Highly Efficient Quantum-Dot Light-Emitting Diodes with DNA−CTMA as a Combined Hole-Transporting and Electron-Blocking Layer

James Grote

ACS Nano, 2009

View PDFchevron_right

Solution-processed green and blue quantum-dot light-emitting diodes with eliminated charge leakage

Yunzhou Deng

Nature Photonics

View PDFchevron_right

Fast-response, high-stability, and high-efficiency full-color quantum dot light-emitting diodes with charge storage layer

Fushan Li

Science China Materials, 2021

View PDFchevron_right

Design of the Hole-Injection/Hole-Transport Interfaces for Stable Quantum-Dot Light-Emitting Diodes

Yunzhou Deng

The Journal of Physical Chemistry Letters, 2020

View PDFchevron_right

High efficiency green InP quantum dot light-emitting diodes by balancing electron and hole mobility

Chichi Wang

Communications Materials, 2021

View PDFchevron_right

Postdeposition Ligand Exchange Allows Tuning the Transport Properties of Large‐Scale CuInSe 2 Quantum Dot Solids

Shekhar Priyadarshi

Advanced Optical Materials, 2019

View PDFchevron_right

The Complete In-Gap Electronic Structure of Colloidal Quantum Dot Solids and Its Correlation with Electronic Transport and Photovoltaic Performance

A. Kirmani, Graham Carey, Xiaoyu Cui, Edward Sargent, Khabiboulakh Katsiev, Armin Fischer

View PDFchevron_right

High-Performance, Solution-Processed, and Insulating-Layer-Free Light-Emitting Diodes Based on Colloidal Quantum Dots

Yunzhou Deng

Advanced materials (Deerfield Beach, Fla.), 2018

View PDFchevron_right

Photovoltaics: The Complete In-Gap Electronic Structure of Colloidal Quantum Dot Solids and Its Correlation with Electronic Transport and Photovoltaic Performance (Adv. Mater. 6/2014)

Edward Sargent, Khabiboulakh Katsiev, Xiaoyu Cui, A. Kirmani

Advanced Materials, 2014

View PDFchevron_right

Bright and Efficient Full-Color Colloidal Quantum Dot Light-Emitting Diodes Using an Inverted Device Structure

K Char

Nano Letters, 2012

View PDFchevron_right

Boosting the Efficiency of Quantum Dot-Sensitized Solar Cells through Formation of the Cation-Exchanged Hole Transporting Layer

Jayanta Dana

Langmuir, 2017

View PDFchevron_right

Bright infrared quantum-dot light-emitting diodes through inter-dot spacing control

Frank Wise

Nature Nanotechnology, 2012

View PDFchevron_right

Characteristics of CuInS2/ZnS quantum dots and its application on LED

Duk Young Jeon

Journal of Crystal Growth, 2011

View PDFchevron_right

Highly Efficient White Light-Emitting Diodes Based on Quantum Dots and Polymer Interface

ty you

IEEE Photonics Technology Letters, 2012

View PDFchevron_right

Emergence of colloidal quantum-dot light-emitting technologies

祈 刘

View PDFchevron_right

Good Charge Balanced Inverted Red InP/ ZnSe/ZnS-Quantum Dot Light-Emitting Diode with New High Mobility and Deep HOMO Level Hole Transport Layer

Kyung Hee University

View PDFchevron_right

High-Efficiency Colloidal Quantum Dot Photovoltaic Devices Using Chemically Modified Heterojunctions

randi azmi

ACS Energy Letters, 2016

View PDFchevron_right

Transparent InP Quantum Dot Light-Emitting Diodes with ZrO2Electron Transport Layer and Indium Zinc Oxide Top Electrode

Jeongno Lee

Advanced Functional Materials, 2016

View PDFchevron_right

Efficient energy transfer from hole transporting materials to CdSe-core CdS/ZnCdS/ZnS-multishell quantum dots in type II aligned blend films

Michio Ikezawa

Applied Physics Letters, 2011

View PDFchevron_right

Charge Transport Characteristics of Surface‐Complexed Quantum Dot in a Thin Film Transistor

Sabyasachi Pramanik

Advanced Materials Interfaces, 2020

View PDFchevron_right

Quantum Dots and Nanoparticles in Light Emitting Diodes, Displays, and Optoelectronic Devices

Jyh-Ming Wu

Journal of Nanomaterials, 2015

View PDFchevron_right

Colloidal quantum dot photodetectors

Gerasimos Konstantatos

Infrared Physics & Technology, 2010

View PDFchevron_right

Confinement Effects and Charge Dynamics in Zn3N2 Colloidal Quantum Dots: Implications for QD-LED Displays

Ruben Ahumada-Lazo

ACS applied nano materials, 2019

View PDFchevron_right

Activated Electron-Transport Layers for Infrared Quantum Dot Optoelectronics

Junghwan Kim

Advanced materials (Deerfield Beach, Fla.), 2018

View PDFchevron_right

Confinement Effects and Charge Dynamics in Zn3N2 Colloidal Quantum Dots: Implications for QD-LED displays

Simon M Fairclough

ACS Applied Nano Materials

View PDFchevron_right

Narrow Band Gap Lead Sulfide Hole Transport Layers for Quantum Dot Photovoltaics

Darren Neo

ACS applied materials & interfaces, 2016

View PDFchevron_right

Quantum Dot Light‐Emitting Transistors—Powerful Research Tools and Their Future Applications

Artem Shulga

Advanced Functional Materials

View PDFchevron_right

Polymeric Hole Transport Materials for Red CsPbI3 Perovskite Quantum-Dot Light-Emitting Diodes

Lung-Chien Chen

Polymers, 2021

View PDFchevron_right

High-efficiency colloidal quantum dot infrared light-emitting diodes via engineering at the supra-nanocrystalline level

santanu pradhan

Nature Nanotechnology, 2018

View PDFchevron_right