Increased performance of an organic light-emitting diode by employing a zinc phthalocyanine based composite hole transport layer
Author:
Publisher
IOP Publishing
Subject
General Physics and Astronomy
Link
https://iopscience.iop.org/article/10.1088/1674-1056/22/12/127304/pdf
Reference21 articles.
1. White Organic Light-Emitting Devices for Solid-State Lighting
2. Extremely low voltage organic light-emitting diodes with p-doped alpha-sexithiophene hole transport and n-doped phenyldipyrenylphosphine oxide electron transport layers
3. Study of hole concentration of 1,4-bis[N-(1-naphthyl)-N′-phenylamino]-4,4′ diamine doped with tungsten oxide by admittance spectroscopy
4. Achieving three-peak white organic light-emitting devices using wavelength-selective mirror electrodes
5. Low-voltage organic electroluminescent devices using pin structures
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1. Tetraalkyl-substituted zinc phthalocyanines used as anode buffer layers for organic light-emitting diodes*;Chinese Physics B;2020-01-01
2. The effect of long-range order on intermolecular interactions in organic semiconductors: zinc octaethyl porphyrin molecular thin film model systems;Physical Chemistry Chemical Physics;2019
3. A study of the optical band gap of zinc phthalocyanine nanoparticles using UV–Vis spectroscopy and DFT function;Applied Nanoscience;2017-04-27
4. Fluorescence resonance energy transfer between CdTe quantum dots and copper phthalocyanine;Acta Physica Sinica;2015
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