Detail publikačního výsledku

Charge transport in highly efficient iridium cored electrophosphorent dendrimers

MARKHAM, J.; SAMUEL, I.; BURN, S.; WEITER, M.; BAESSLER, H.

Originální název

Charge transport in highly efficient iridium cored electrophosphorent dendrimers

Anglický název

Charge transport in highly efficient iridium cored electrophosphorent dendrimers

Druh

Článek recenzovaný mimo WoS a Scopus

Originální abstrakt

Electrophosphorescent dendrimers are promising materials for highly efficient light-emitting diodes. They consist of a phosphorescent core onto which dendritic groups are attached. Here, we present an investigation into the optical and electronic properties of highly efficient phosphorescent dendrimers. The effect of dendrimer structure on charge transport and optical properties is studied using temperature-dependent charge-generation-layer time-of-flight measurements and current voltage (I-V) analysis .

Anglický abstrakt

Electrophosphorescent dendrimers are promising materials for highly efficient light-emitting diodes. They consist of a phosphorescent core onto which dendritic groups are attached. Here, we present an investigation into the optical and electronic properties of highly efficient phosphorescent dendrimers. The effect of dendrimer structure on charge transport and optical properties is studied using temperature-dependent charge-generation-layer time-of-flight measurements and current voltage (I-V) analysis .

Klíčová slova v angličtině

transient photoconductivity, conjugated polymers, organic semiconductors

Autoři

MARKHAM, J.; SAMUEL, I.; BURN, S.; WEITER, M.; BAESSLER, H.

Vydáno

15.01.2004

ISSN

0021-8979

Periodikum

JOURNAL OF APPLIED PHYSICS

Svazek

95

Číslo

2

Stát

Spojené státy americké

Strany od

438

Strany počet

8

BibTex

@article{BUT41981,
  author="John {Markham} and Ian {Samuel} and Scot {Burn} and Martin {Weiter} and Hienz {Baessler}",
  title="Charge transport in highly efficient iridium cored electrophosphorent dendrimers",
  journal="JOURNAL OF APPLIED PHYSICS",
  year="2004",
  volume="95",
  number="2",
  pages="8",
  issn="0021-8979"
}