活动层
材料科学
聚合物太阳能电池
光活性层
能量转换效率
光电子学
激子
接受者
离解(化学)
逐层
飞秒
吸收(声学)
超快激光光谱学
纳米技术
异质结
聚合物
量子点
有机太阳能电池
化学物理
作者
Beining Wang,Zhongle Chen,X. Liu,Chenghuan Chen,Ya Wang,István Bíró,Gusztáv Fekete,Shu Xu,Hai-Qiao Wang
出处
期刊:ACS Photonics
[American Chemical Society]
日期:2025-12-30
卷期号:13 (2): 424-432
被引量:1
标识
DOI:10.1021/acsphotonics.5c02041
摘要
Small-molecule donor:polymer acceptor (SMD:PA) organic solar cells have garnered attention due to their excellent active layer stability, yet their efficiency remains significantly lower than other OSC types. This study addresses the challenge of morphology control in SMD:PA systems via a layer-by-layer (LBL) process to optimize the donor–acceptor interpenetrating network. Using small-molecule donor B1 and polymer acceptor PY-IT with chloroform as a universal solvent, we systematically investigated the impact of LBL processing on the active layer morphology and device performance. The inverted LBL device (ITO/ZnO/PY-IT/B1/MoO 3 /Ag) achieved a power conversion efficiency of 8.6%, significantly outperforming the bulk heterojunction devices (inverted 2.91% and normal 6.11%) and previously reported LBL SMD:PA cells (1.12%). Static and femtosecond transient absorption spectra, time-resolved photoluminescence, and grazing incidence X-ray diffraction analyses revealed that the LBL and nonorthogonal solvent strategy facilitated effective B1 infiltration into the PY-IT layer, forming an optimized active layer with refined phase separation and improved donor/acceptor interfaces, thus resulting in enhanced exciton dissociation and charge transport while reducing recombination losses. This work validates the feasibility of LBL processing for high-efficiency SMD:PA OSCs, offering a novel strategy to overcome the efficiency limitations of this class of OSCs.
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