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Artificial light-harvesting n-type porphyrin for panchromatic organic photovoltaic devices

机译:用于全色有机光伏器件的人工集光n型卟啉

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摘要

A near-infrared-harvesting n-type porphyrin-based acceptor for organic photovoltaics (OPVs) was developed. The n-type acceptor, PDI–PZn–PDI, was designed by connecting a zinc porphyrin (PZn) core to two perylenediimide (PDI) wings through ethyne bridges. A narrow bandgap of 1.27 eV was achieved through the extended π-conjugation and intramolecular charge transfer between the strongly electron-donating PZn core and the electron-accepting PDI wings. A bulk heterojunction (BHJ) structured photovoltaic device fabricated from PDI–PZn–PDI with PTB7-Th exhibited panchromatic photon-to-current conversion from 350 to 900 nm. A power conversion efficiency of 5.25% with a remarkably low E loss of 0.54 eV was achieved by optimizing the nanomorphology of the BHJ films by adding pyridine and by controlling the ZnO/BHJ interfacial properties.
机译:开发了一种用于有机光伏的近红外n型卟啉受体。 n型受体PDI-PZn-PDI是通过乙炔桥将卟啉锌(PZn)核与两个per二酰亚胺(PDI)翼相连而设计的。通过在强供电子的PZn核与受电子的PDI翼之间扩展的π共轭和分子内电荷转移,实现了1.27 eV的窄带隙。由PDI-PZn-PDI与PTB7-Th制成的体异质结(BHJ)结构的光伏器件显示了从350到900 nm的全色光子到电流的转换。通过添加吡啶并控制ZnO / BHJ界面性能来优化BHJ膜的纳米形貌,可实现5.25%的功率转换效率和0.54 eV的极低E损耗。

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