Time-delayed collection field (TDCF), bias-assisted charge extraction (BACE), and space charge-limited current (SCLC) measurements are combined with complete numerical device simulations to unveil the effect of the solvent additive 1,8-diiodooctane (DIO) on the performance of PTB7:PCBM bulk heterojunction solar cells. DIO is shown to increase the charge generation rate, reduce geminate and bimolecular recombination, and increase the electron mobility. In total, the reduction of loss currents by processing with the additive raises the power conversion efficiency of the PTB7:PCBM blend by a factor of almost three. The lower generation rates and higher geminate recombination losses in devices without DIO are consistent with a blend morphology ...
We use solvent additives as a simple method to tune the photovoltaic performance of poly-3-hexylthio...
The poor photovoltaic performance of state-of-the-art blends of poly[4,8-bis[(2-ethylhexyl)oxy]benzo...
Time-delayed collection field (TDCF) and bias-amplified charge extraction (BACE) are applied to as-p...
Time-delayed collection field (TDCF), bias-assisted charge extraction (BACE), and space charge-limit...
Time-delayed collection field (TDCF), bias-assisted charge extraction (BACE), and space charge-limit...
Organic bulk heterojunction solar cells use polymer thin film technology which is cost effective, fl...
Microstructural changes and the understanding of their effect on photocurrent generation are key asp...
1,8-diiodooctane (DIO) additive is an important method for optimizing the morphology and device perf...
How 1,8-diiodooctane (DIO) enhances performance of polymer solar cells based on polymer HXS-1 and fu...
Charge separation and extraction dynamics were investigated in high-performance bulk heterojunction ...
The use of diiodooctane as processing additive for construction of PCPDTBT:PCBM solar cells results ...
This work was supported by the Research Council of Lithuania (project MIP-85/2015), the Engineering ...
Charge separation and extraction dynamics were investigated in high performance bulk heterojunction ...
Power conversion efficiencies of donor/acceptor organic solar cells utilizing nonfullerene acceptors...
We developed p-DTS(FBTTh2)(2):PC71BM-based small molecule bulk heterojunction solar cells using 1,8-...
We use solvent additives as a simple method to tune the photovoltaic performance of poly-3-hexylthio...
The poor photovoltaic performance of state-of-the-art blends of poly[4,8-bis[(2-ethylhexyl)oxy]benzo...
Time-delayed collection field (TDCF) and bias-amplified charge extraction (BACE) are applied to as-p...
Time-delayed collection field (TDCF), bias-assisted charge extraction (BACE), and space charge-limit...
Time-delayed collection field (TDCF), bias-assisted charge extraction (BACE), and space charge-limit...
Organic bulk heterojunction solar cells use polymer thin film technology which is cost effective, fl...
Microstructural changes and the understanding of their effect on photocurrent generation are key asp...
1,8-diiodooctane (DIO) additive is an important method for optimizing the morphology and device perf...
How 1,8-diiodooctane (DIO) enhances performance of polymer solar cells based on polymer HXS-1 and fu...
Charge separation and extraction dynamics were investigated in high-performance bulk heterojunction ...
The use of diiodooctane as processing additive for construction of PCPDTBT:PCBM solar cells results ...
This work was supported by the Research Council of Lithuania (project MIP-85/2015), the Engineering ...
Charge separation and extraction dynamics were investigated in high performance bulk heterojunction ...
Power conversion efficiencies of donor/acceptor organic solar cells utilizing nonfullerene acceptors...
We developed p-DTS(FBTTh2)(2):PC71BM-based small molecule bulk heterojunction solar cells using 1,8-...
We use solvent additives as a simple method to tune the photovoltaic performance of poly-3-hexylthio...
The poor photovoltaic performance of state-of-the-art blends of poly[4,8-bis[(2-ethylhexyl)oxy]benzo...
Time-delayed collection field (TDCF) and bias-amplified charge extraction (BACE) are applied to as-p...