Ir(ppy):CBP blends have been widely studied as the emissive layer in organic light emitting diodes (OLEDs), yet crucial questions about charge transport within the layer remain unaddressed. Recent molecular dynamics simulations show that the Ir(ppy) molecules are not isolated from each other, but at concentrations of as low as 5 wt. % can be part of connected pathways. Such connectivity raises the question of how the iridium(iii) complexes contribute to long-range charge transport in the blend. We implement a kinetic Monte Carlo transport model to probe the guest concentration dependence of charge mobility and show that distinct minima appear at approximately 10 wt. % Ir(ppy) due to an increased number of trap states that can include interc...
Host–guest systems are crucial for achieving high efficiency in most organic light-emitting diode (O...
emitting diode materials both efficiency and stability, and have now reached the stage of commercial...
Stable film morphology is critical for long-term high performance organic light-emitting diodes (OLE...
Ir(ppy)₃:CBP blends have been widely studied as the emissive layer in organic light emitting diodes ...
Phosphorescent emissive materials in organic light‐emitting diodes (OLEDs) manufactured using evapor...
Balanced charge injection and transport in organic light-emitting diodes (OLEDs) is essential for hi...
The effect of varying the emitter concentration on the structural properties of an archetypal phosph...
Emissive layers in phosphorescent organic light-emitting diodes commonly make use of guest–host blen...
The correct choice of guest and host molecules in the light-emitting layer is essential for developi...
Voltage losses in singlet material-based organic photovoltaic devices (OPVs) have been intensively s...
Solution-processing of organic light-emitting diode films has potential advantages in terms of cost ...
Charge transport in polymeric or small-molecule organic semiconductors used in organic light-emittin...
Stable film morphology is critical for long-term high performance organic light-emitting diodes (OLE...
Fac-tris[2-phenylpyridinato-C2,N]iridium(III) [Ir(ppy)3] is a well-known phosphorescent material for...
The luminance and the charge transport mechanisms for phosphorescent organic light-emitting devices ...
Host–guest systems are crucial for achieving high efficiency in most organic light-emitting diode (O...
emitting diode materials both efficiency and stability, and have now reached the stage of commercial...
Stable film morphology is critical for long-term high performance organic light-emitting diodes (OLE...
Ir(ppy)₃:CBP blends have been widely studied as the emissive layer in organic light emitting diodes ...
Phosphorescent emissive materials in organic light‐emitting diodes (OLEDs) manufactured using evapor...
Balanced charge injection and transport in organic light-emitting diodes (OLEDs) is essential for hi...
The effect of varying the emitter concentration on the structural properties of an archetypal phosph...
Emissive layers in phosphorescent organic light-emitting diodes commonly make use of guest–host blen...
The correct choice of guest and host molecules in the light-emitting layer is essential for developi...
Voltage losses in singlet material-based organic photovoltaic devices (OPVs) have been intensively s...
Solution-processing of organic light-emitting diode films has potential advantages in terms of cost ...
Charge transport in polymeric or small-molecule organic semiconductors used in organic light-emittin...
Stable film morphology is critical for long-term high performance organic light-emitting diodes (OLE...
Fac-tris[2-phenylpyridinato-C2,N]iridium(III) [Ir(ppy)3] is a well-known phosphorescent material for...
The luminance and the charge transport mechanisms for phosphorescent organic light-emitting devices ...
Host–guest systems are crucial for achieving high efficiency in most organic light-emitting diode (O...
emitting diode materials both efficiency and stability, and have now reached the stage of commercial...
Stable film morphology is critical for long-term high performance organic light-emitting diodes (OLE...