The power conversion efficiency (PCE) and operation stability of all-polymer solar cells (all-PSCs) are expected to be simultaneously pushed to a high level, that can be considered for further commercialization. Here the sequential processing (SqP) method is applied to process the PM6:PY-DT all-polymer system, while the control devices are made from the blend casting (BC) method. As a result, the efficiency rises to 16.5% in SqP devices from 15.8% of their BC counterparts, which is mainly caused by the improved fill factor (FF). Device physics study and morphology analysis reveal that optimized crystallinity and vertical phase separation result in suppressed charge recombination, higher charge collection and transport ability, which is resp...
This report investigates the potential and challenges for all-polymer solar cells to be produced usi...
Using a stepwise-heating protocol in the Stille polycondensation in conjunction with optimized proce...
The vertical composition distribution and crystallinity of photoactive layers are considered to have...
In this work, we apply the sequential processing (SqP) method to address the relatively low electron...
Optimal active layer morphology is a prerequisite for high-efficiency all-polymer solar cells (all-P...
Although most polymer/fullerene-based solar cells are cast from a blend of the components in solutio...
Considering the robust and stable nature of the active layers, advancing the power conversion effici...
Compared to bulk heterojunction (BHJ) organic solar cells (OSCs) prepared by the blend casting in “o...
All-polymer solar cells (all-PSCs) are the most promising power generators for flexible and portable...
Developing robust materials is very critical and faces a big challenge for high-performance large-ar...
A major difficulty in the polymer solar cell (PSC) community is discovering a methodology capable of...
Polymer solar cells (PSCs) are fabricated without solvent additives using a low-bandgap polymer, PBD...
All‐polymer solar cells (APSCs), composed of semiconducting donor and acceptor polymers, have attrac...
In this contribution, we report the working mechanisms of several processing additives for controlli...
The morphology of the active layer plays a crucial role in determining device performance and stabil...
This report investigates the potential and challenges for all-polymer solar cells to be produced usi...
Using a stepwise-heating protocol in the Stille polycondensation in conjunction with optimized proce...
The vertical composition distribution and crystallinity of photoactive layers are considered to have...
In this work, we apply the sequential processing (SqP) method to address the relatively low electron...
Optimal active layer morphology is a prerequisite for high-efficiency all-polymer solar cells (all-P...
Although most polymer/fullerene-based solar cells are cast from a blend of the components in solutio...
Considering the robust and stable nature of the active layers, advancing the power conversion effici...
Compared to bulk heterojunction (BHJ) organic solar cells (OSCs) prepared by the blend casting in “o...
All-polymer solar cells (all-PSCs) are the most promising power generators for flexible and portable...
Developing robust materials is very critical and faces a big challenge for high-performance large-ar...
A major difficulty in the polymer solar cell (PSC) community is discovering a methodology capable of...
Polymer solar cells (PSCs) are fabricated without solvent additives using a low-bandgap polymer, PBD...
All‐polymer solar cells (APSCs), composed of semiconducting donor and acceptor polymers, have attrac...
In this contribution, we report the working mechanisms of several processing additives for controlli...
The morphology of the active layer plays a crucial role in determining device performance and stabil...
This report investigates the potential and challenges for all-polymer solar cells to be produced usi...
Using a stepwise-heating protocol in the Stille polycondensation in conjunction with optimized proce...
The vertical composition distribution and crystallinity of photoactive layers are considered to have...