It is widely known that the miscibility between donor and acceptor is a crucial factor that affects the morphology and thus device performance of nonfullerene organic solar cells (OSCs). In this Letter, we show that incorporating a third component with lower miscibility and higher lowest unoccupied molecular orbital (LUMO) level into the state-of-the-art PM6:Y6 system can significantly enhance the performance of devices. The best results of the ternary devices are achieved by adding a small molecular acceptor named ITCPTC (similar to 5% w/w), which significantly improves the power conversion efficiency (PCE) of the host system from 16.44% to 17.42%. The higher LUMO of the third component increases the open-circuit voltage (V-oc), while the ...
The development of non-fullerene acceptor molecules have remarkably boosted power conversion efficie...
The insufficient phase separation between polymer donors and nonfullerene acceptors (NFAs) featuring...
Ternary organic solar cells (OSCs) have received extensive attention for improving the power convers...
A ternary structure has been demonstrated as being an effective strategy to realize high power conve...
Herein, PC71BM is used as the third component (the second acceptor) to improve the photovoltaic perf...
A small molecule donor TiC12 with an asymmetric thieno[3,2-c]isochromene unit is incorporated into t...
Introducing a third component into organic bulk heterojunction solar cells has become an effective s...
Constructing ternary structure is one of the most effective design strategies to break the efficienc...
Constructing ternary structure is one of the most effective design strategies to break the efficienc...
Constructing ternary structure is one of the most effective design strategies to break the efficienc...
Two n-type organic semiconductor (n-OS) acceptors, C8-SF and Y-MODF, were designed and synthesized f...
By introducing a non-fullerene small molecule acceptor as a third component to typical polymer donor...
Although breakthroughs have been made in organic solar cells (OSCs) in recent years, the power conve...
By introducing a non-fullerene small molecule acceptor as a third component to typical polymer donor...
By introducing a non-fullerene small molecule acceptor as a third component to typical polymer donor...
The development of non-fullerene acceptor molecules have remarkably boosted power conversion efficie...
The insufficient phase separation between polymer donors and nonfullerene acceptors (NFAs) featuring...
Ternary organic solar cells (OSCs) have received extensive attention for improving the power convers...
A ternary structure has been demonstrated as being an effective strategy to realize high power conve...
Herein, PC71BM is used as the third component (the second acceptor) to improve the photovoltaic perf...
A small molecule donor TiC12 with an asymmetric thieno[3,2-c]isochromene unit is incorporated into t...
Introducing a third component into organic bulk heterojunction solar cells has become an effective s...
Constructing ternary structure is one of the most effective design strategies to break the efficienc...
Constructing ternary structure is one of the most effective design strategies to break the efficienc...
Constructing ternary structure is one of the most effective design strategies to break the efficienc...
Two n-type organic semiconductor (n-OS) acceptors, C8-SF and Y-MODF, were designed and synthesized f...
By introducing a non-fullerene small molecule acceptor as a third component to typical polymer donor...
Although breakthroughs have been made in organic solar cells (OSCs) in recent years, the power conve...
By introducing a non-fullerene small molecule acceptor as a third component to typical polymer donor...
By introducing a non-fullerene small molecule acceptor as a third component to typical polymer donor...
The development of non-fullerene acceptor molecules have remarkably boosted power conversion efficie...
The insufficient phase separation between polymer donors and nonfullerene acceptors (NFAs) featuring...
Ternary organic solar cells (OSCs) have received extensive attention for improving the power convers...