“…Thanks to the continuous optimization of non-fullerene acceptors (such as ITIC and Y6) and device processes, the PCEs of single-junction OSCs have increased to nearly 20%. 21–30 The development of polymer donors that can match well with these non-fullerene acceptors is essential for the commercialization and large-scale application of OSCs. The ideal polymer donors that match non-fullerene acceptors should have the following characteristics: 31 a relatively wide bandgap (>1.8 eV), adequate energy levels and suitable aggregation properties.…”
Organic solar cells (OSCs) have become one of the most rapidly developing research fields in the past decades due to advantages such as low-cost manufacturing, large-area solution preparation, and compatibility...
“…Thanks to the continuous optimization of non-fullerene acceptors (such as ITIC and Y6) and device processes, the PCEs of single-junction OSCs have increased to nearly 20%. 21–30 The development of polymer donors that can match well with these non-fullerene acceptors is essential for the commercialization and large-scale application of OSCs. The ideal polymer donors that match non-fullerene acceptors should have the following characteristics: 31 a relatively wide bandgap (>1.8 eV), adequate energy levels and suitable aggregation properties.…”
Organic solar cells (OSCs) have become one of the most rapidly developing research fields in the past decades due to advantages such as low-cost manufacturing, large-area solution preparation, and compatibility...
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