首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Development of a phenanthrodithiophene-difluorobenzoxadiazole copolymer exhibiting high open-circuit voltage in organic solar cells
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Development of a phenanthrodithiophene-difluorobenzoxadiazole copolymer exhibiting high open-circuit voltage in organic solar cells

机译:在有机太阳能电池中表现出高开路电压的菲苯二苯甲苯二唑共聚物的研制

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A phenanthrodithiophene (PDT)-difluorobenzoxadiazole (DFBO) copolymer, P-PDT-DFBO, was synthesized and characterized. Replacing a thiadiazole with an oxadiazole ring gives the synthesized polymer a highest occupied molecular orbital (HOMO) about 0.1 V lower, and lowest unoccupied molecular orbital energy levels lower than those of its benzothiadiazole (BT) counterpart, due to the more electron-deficient oxadiazole. Furthermore, since oxadiazole has a larger dipole moment than BT, P-PDT-DFBO exhibits greater aggregation strength than previously reported for P-PDT-DFBT. The low-lying HOMO level of P-PDT-DFBO gave about 0.1 V higher open-circuit voltage (V-oc), yielding over 0.9 V in a fabricated solar cell. From grazing incidence wide-angle X-ray diffraction analysis, P-PDT-DFBO formed a favorable face-on orientation in both neat and blended films, indicating that the incorporation of an oxadiazole moiety can enhance V-oc without any orientation change in the solid state. However, a P-PDT-DFBO-based cell exhibited significantly lower J(sc) and FF, and thus less power conversion efficiency, not 4.43%, due to its lower hole mobility than P-PDT-DFBT. One possible reason for poor performance may be the low crystallinity of P-PDT-DFBO in blended film. This may be caused by its strong aggregation tendency, leading to fast crystallization into a semiamorphous structure or to interference with the construction of long-range ordered structure. (c) 2018 Wiley Periodicals, Inc. J. Polym. Sci., Part A: Polym. Chem. 2018, 56, 2646-2655
机译:合成并表征菲苯丙酚乙烯(PDT) - 氟氟苯噻唑(DFBO)共聚物P-PDT-DFBO。用氧代唑环替代噻二唑,得到合成的聚合物,其最高占用的分子轨道(HOMO)约为0.1V,并且由于贫瘠的氧代唑(BT)对应物低于其苯并噻唑(BT)对应的最低未占用的分子轨道能量。 。此外,由于氧基亚唑具有比BT更大的偶极矩,因此P-PDT-DFBO表现出比先前对P-PDT-DFBT报道的更大的聚集强度。 P-PDT-DFBO的低位HOMO水平具有约0.1V更高的开路电压(V-OC),在制造的太阳能电池中产生超过0.9V。从掠入发生率广角X射线衍射分析中,P-PDT-DFBO在整个整洁和混合膜中形成有利的面对取向,表明掺入恶臭部分可以增强V-OC,而没有任何取向变化固体状态。然而,P-PDT-DFBO基细胞表现出显着降低的J(SC)和FF,因此功率转换效率较低,而不是GT; 4.43%,由于其低于P-PDT-DFBT。性能不佳的可能原因可能是共混膜中P-PDT-DFBO的低结晶度。这可能是由其强烈的聚集趋势引起的,导致将结晶快到半晶体结构或干扰长范围有序结构的结构。 (c)2018 Wiley期刊,Inc.J.Colom。 SCI。,A部分:polym。化学。 2018,56,2646-2655

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