We demonstrate that the inclusion of a small amount of the co-solvent 1,8-diiodooctane in the preparation of a bulk-heterojunction photovoltaic device increases its power conversion efficiency by 20%, through a mechanism of transient plasticisation. We follow the removal of 1,8-diiodooctane directly after spin-coating using ellipsometry and ion beam analysis, while using small angle neutron scattering to characterise the morphological nanostructure evolution of the film. In PffBT4T-2OD/PC71BM devices, the power conversion efficiency increases from 7.2% to above 8.7% as a result of the coarsening of the phase domains. This coarsening process is assisted by thermal annealing and the slow evaporation of 1,8-diiodooctane, which we suggest, acts...
1,8-Diiodooctane (DIO) is a high boiling point solvent additive commonly used to control the active ...
The impact of alkyl chain length of different additives, such as 1,4-diiodobutane (DIB), 1,6-diiodoh...
Controlling the morphology of thin films is key in optimizing the efficiency of polymer-based photov...
We demonstrate that the inclusion of a small amount of the co-solvent 1,8-diiodooctane in the prepar...
The realization of controllable morphologies of bulk heterojunctions (BHJ) in organic photovoltaics ...
Microstructural changes and the understanding of their effect on photocurrent generation are key asp...
Very small amounts of 1,8-diiodooctane (DIO) are very effective at optimizing the performance of pol...
We developed p-DTS(FBTTh2)(2):PC71BM-based small molecule bulk heterojunction solar cells using 1,8-...
This study presents how the polymer molecular weight (M-w) of PBDTTT-C affects the PBDTTT-C:PC71BM n...
The impact of the additive 1,8-diiodooctane on the morphology of bulk-heterojunction solar cells bas...
How 1,8-diiodooctane (DIO) enhances performance of polymer solar cells based on polymer HXS-1 and fu...
1,8-diiodooctane (DIO) additive is an important method for optimizing the morphology and device perf...
This study presents how the polymer molecular weight (M-w) of PBDTTT-C affects the PBDTTT-C:PC71BM n...
This thesis focuses on adding small-molecule acceptor materials to semiconducting polymer films. Sem...
Solvent additives such as diiodooctane (DIO) are becoming ubiquitous in processing high performance ...
1,8-Diiodooctane (DIO) is a high boiling point solvent additive commonly used to control the active ...
The impact of alkyl chain length of different additives, such as 1,4-diiodobutane (DIB), 1,6-diiodoh...
Controlling the morphology of thin films is key in optimizing the efficiency of polymer-based photov...
We demonstrate that the inclusion of a small amount of the co-solvent 1,8-diiodooctane in the prepar...
The realization of controllable morphologies of bulk heterojunctions (BHJ) in organic photovoltaics ...
Microstructural changes and the understanding of their effect on photocurrent generation are key asp...
Very small amounts of 1,8-diiodooctane (DIO) are very effective at optimizing the performance of pol...
We developed p-DTS(FBTTh2)(2):PC71BM-based small molecule bulk heterojunction solar cells using 1,8-...
This study presents how the polymer molecular weight (M-w) of PBDTTT-C affects the PBDTTT-C:PC71BM n...
The impact of the additive 1,8-diiodooctane on the morphology of bulk-heterojunction solar cells bas...
How 1,8-diiodooctane (DIO) enhances performance of polymer solar cells based on polymer HXS-1 and fu...
1,8-diiodooctane (DIO) additive is an important method for optimizing the morphology and device perf...
This study presents how the polymer molecular weight (M-w) of PBDTTT-C affects the PBDTTT-C:PC71BM n...
This thesis focuses on adding small-molecule acceptor materials to semiconducting polymer films. Sem...
Solvent additives such as diiodooctane (DIO) are becoming ubiquitous in processing high performance ...
1,8-Diiodooctane (DIO) is a high boiling point solvent additive commonly used to control the active ...
The impact of alkyl chain length of different additives, such as 1,4-diiodobutane (DIB), 1,6-diiodoh...
Controlling the morphology of thin films is key in optimizing the efficiency of polymer-based photov...