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Engineering of Porphyrin Molecules for Use as Effective Cathode Interfacial Modifiers in Organic Solar Cells of Enhanced Efficiency and Stability

机译:卟啉分子的工程用作有机太阳能电池的有效阴极界面改性,提高效率和稳定性

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In the present work, we effectively modify the TiO2 electron transport layer of organic solar cells with an inverted architecture using appropriately engineered porphyrin molecules. The results show that the optimized porphyrin modifier bearing two carboxylic acids as the anchoring groups and a triazine electron-withdrawing spacer significantly reduces the work function of TiO2, thereby reducing the electron extraction barrier. Moreover, the lower surface energy of the porphyrin-modified substrate results in better physical compatibility between the latter and the photoactive blend. Upon employing porphyrin-modified TiO2 electron transport layers in PTB7:PC71 BM-based organic solar cells we obtained an improved average power conversion efficiency up to 8.73%. Importantly, porphyrin modification significantly increased the lifetime of the devices, which retained 80% of their initial efficiency after 500 h of storage in the dark. Because of its simplicity and efficacy, this approach should give tantalizing glimpses and generate an impact into the potential of porphyrins to facilitate electron transfer in organic solar cells and related devices.
机译:在本作工作中,我们使用适当工程化卟啉分子有效地用倒置架构用倒置架构改变有机太阳能电池的TiO2电子传输层。结果表明,携带两个羧酸作为锚定基团的优化卟啉改性剂和三嗪电子抽出间隔物显着降低了TiO2的功函数,从而减少了电子提取屏障。此外,卟啉改性基材的下表面能导致后者和光活性混合物之间的更好的物理兼容性。在使用PTB7中使用卟啉改性的TiO2电子传输层时,PC71 BM的有机太阳能电池,我们获得了高达8.73%的平均功率转换效率的提高。重要的是,卟啉改性显着增加了装置的寿命,其在黑暗中储存500小时后保留了80%的初始效率。由于其简单性和功效,这种方法应给予尖刺刺激并产生卟啉的潜力,以便于有机太阳能电池和相关装置中的电子转移。

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