Lifetime enhancement in QDLEDs via an electron-blocking hole transport layer
Abstract This study investigates the impact of an engineered hole transport layer (HTL) on the stability of electroluminescent quantum dot light-emitting devices (QDLEDs). The 9-Phenyl-3,6-bis(9-phenyl-9Hcarbazol-3-yl)-9H-carbazole (Tris-PCz) HTL, which possesses a shallower lowest unoccupied molecu...
Những tác giả chính: | Fatemeh Samaeifar, Mohsen Azadinia, Hany Aziz |
---|---|
Định dạng: | Bài viết |
Ngôn ngữ: | English |
Được phát hành: |
Nature Portfolio
2023-10-01
|
Loạt: | Scientific Reports |
Truy cập trực tuyến: | https://doi.org/10.1038/s41598-023-45907-5 |
Những quyển sách tương tự
-
The FDTD Simulation of QDLED Performance Dependency on the Location of Colloidal Quantum Dots
Bằng: Neda Heydari, et al.
Được phát hành: (2024-02-01) -
Significant Lifetime Enhancement in QLEDs by Reducing Interfacial Charge Accumulation via Fluorine Incorporation in the ZnO Electron Transport Layer
Bằng: Dong Seob Chung, et al.
Được phát hành: (2022-11-01) -
The Root Causes of the Limited Electroluminescence Stability of Solution-Coated Versus Vacuum-Deposited Small-Molecule OLEDs: A Mini-Review
Bằng: Fatemeh Samaeifar, et al.
Được phát hành: (2022-04-01) -
Carbon-based perovskite solar cells with electron and hole-transporting/-blocking layers
Bằng: Wenjin Yu, et al.
Được phát hành: (2023-01-01) -
Improving hole injection efficiency by manipulating the hole transport mechanism through p-type electron blocking layer engineering
Bằng: Zhang, Zi-Hui, et al.
Được phát hành: (2014)