Department of Chemistry , Kookmin University , 77 Jeongneung-ro , Seongbuk-gu, Seoul 02707 , Republic of Korea.
Korea Research Institute of Chemical Technology (KRICT) , 141 Gajeong-ro , Yuseong-gu, Daejeon 34114 , Republic of Korea.
ACS Appl Mater Interfaces. 2018 Dec 5;10(48):41344-41349. doi: 10.1021/acsami.8b14577. Epub 2018 Nov 16.
While the outstanding charge transport and sunlight-harvesting properties of porphyrin molecules are highly attractive as active materials for organic photovoltaic (OPV) devices, the development of n-type porphyrin-based electron acceptors has been challenging. In this work, we developed a high-performance porphyrin-based electron acceptor for OPVs by substitution of four naphthalene diimide (NDI) units at the perimeter of a Zn-porphyrin (P) core using ethyne linkage. Effective π-conjugation between four NDI wings and the P core significantly broadened Q-band absorption to the near infrared region, thereby achieving the narrow band gap of 1.33 eV. Employing a windmill-structured tetra-NDI substituted P-based acceptor ( P-TNDI) and mid-band gap polymer donor (PTB7-Th), the bulk heterojunction OPV devices achieved a power conversion efficiency (PCE) of 8.15% with an energy loss of 0.61 eV. The PCE of our P-TNDI-based device was the highest among the reported OPVs using porphyrin-based acceptors. Notably, the amorphous characteristic of P-TNDI enabled optimization of the device performance without using any additive, which should make industrial fabrication simpler and cheaper.
虽然卟啉分子具有出色的电荷输运和阳光收集性能,非常适合用作有机光伏 (OPV) 器件的活性材料,但开发基于卟啉的 n 型电子受体一直具有挑战性。在这项工作中,我们通过在 Zn-卟啉 (P) 核心的外围用乙炔键连接四个萘二酰亚胺 (NDI) 单元,开发了一种高性能的基于卟啉的电子受体用于 OPV。四个 NDI 翼片和 P 核心之间的有效 π 共轭显著拓宽了 Q 带吸收至近红外区域,从而实现了 1.33 eV 的窄带隙。采用风车结构的四 NDI 取代的 P 基受体 (P-TNDI) 和中带隙聚合物给体 (PTB7-Th),体异质结 OPV 器件实现了 8.15%的功率转换效率 (PCE),能量损耗为 0.61 eV。我们基于 P-TNDI 的器件的 PCE 在使用基于卟啉的受体的报道的 OPV 中是最高的。值得注意的是,P-TNDI 的非晶态特性使无需使用任何添加剂即可优化器件性能,这应该使工业制造更简单、更便宜。