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Study of Burn-In Loss in Green Solvent-Processed Ternary Blended Organic Photovoltaics Derived from UV-Crosslinkable Semiconducting Polymers and Nonfullerene Acceptors

机译:UV可交联半导体聚合物和非富勒烯受体衍生的绿色溶剂加工的三元混合有机光伏的老化损耗研究

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This work deals with the investigation of burn-in loss in ternary blended organic photovoltaics (OPVs) prepared from a UV-crosslinkable semiconducting polymer (P2FBTT-Br) and a nonfullerene acceptor (IEICO-4F) via a green solvent process. The synthesized P2FBTT-Br can be crosslinked by UV irradiation for 150 s and dissolved in 2-methylanisole due to its asymmetric structure. In OPV performance and burn-in loss tests performed at 75 degrees C or AM 1.5G Sun illumination for 90 h, UV-crosslinked devices with PC71BM show 9.2% power conversion efficiency (PCE) and better stability against burn-in loss than pristine devices. The frozen morphology resulting from the crosslinking prevents lateral crystallization and aggregation related to morphological degradation. When IEICO-4F is introduced in place of a fullerene-based acceptor, the burn-in loss due to thermal aging and light soaking is dramatically suppressed because of the frozen morphology and high miscibility of the nonfullerene acceptor (18.7% -> 90.8% after 90 h at 75 degrees C and 37.9% -> 77.5% after 90 h at AM 1.5G). The resulting crosslinked device shows 9.4% PCE (9.8% in chlorobenzene), which is the highest value reported to date for crosslinked active materials, in the first green processing approach.
机译:这项工作涉及通过绿色溶剂工艺由可紫外线交联的半导体聚合物(P2FBTT-Br)和非富勒烯受体(IEICO-4F)制备的三元混合有机光伏(OPV)的老化损耗的研究。合成的P2FBTT-Br由于其不对称结构,可通过紫外线照射150 s交联并溶于2-甲基茴香醚。在75°C或AM 1.5G太阳光照下进行90小时的OPV性能和老化损耗测试中,具有PC71BM的紫外线交联器件显示出9.2%的功率转换效率(PCE),并且与原始器件相比,具有更好的抗老化损耗稳定性。由交联产生的冷冻形态防止了与形态降解有关的横向结晶和聚集。当引入IEICO-4F代替基于富勒烯的受体时,由于非富勒烯受体的冷冻形态和高度可混溶性,热老化和光浸入引起的老化损失得到了显着抑制(18.7%-> 90.8%)。在75摄氏度下90小时,在AM 1.5G下90个小时后为37.9%-> 77.5%。所得的交联装置显示出9.4%的PCE(在氯苯中为9.8%),这是迄今为止在第一种绿色加工方法中交联的活性材料的最高值。

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