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首页> 外文期刊>Advanced Functional Materials >Gold (Ⅲ) Corroles for High Performance Organic Solar Cells
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Gold (Ⅲ) Corroles for High Performance Organic Solar Cells

机译:高性能有机太阳能电池金(Ⅲ)腐蚀剂

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While the use of molecular materials having long-lived triplet excited state(s) for harvesting solar energy could be an effective approach to boost up the power conversion efficiency (PCE) of organic solar cells (OSCs), the performances of this kind of OSCs as reported in the literature are low (< 2.9% PCE attained for the vacuum-deposited OSCs). Herein, the realization of high performance OSCs by using gold(Ⅲ) 5,10,15-triphenylcorrole (Au-Cl), gold(Ⅲ) 10-(p-trifluoromethylphenyl)-5,15-diphenylcorrole (Au-C2), and gold(Ⅲ) 10-(pentafluorophenyl)-5,15-diphenyl-corrole (Au-C3), as electron-donors, is described. These gold(Ⅲ) corroles display excited state lifetimes of ≥ 25 μs and low emission quantum yields of < 0.15%. With the complexes Au-C1, Au-C2, and Au-C3, vacuum-deposited OSCs, which give PCEs of 2.7%, 3.0%, and 1.8%, respectively, are fabricated. The PCE can be further boosted up to 4.0% after thermal treatment of the OSC devices. Meanwhile, a solution-processed OSC based on Au-C2 with a high PCE of 6.0% is fabricated. These PCE values are among the best reported for both types of vacuum-deposited and solution-processed OSCs fabricated with metal-organic complexes having long-lived excited states as electron-donor material. The underlying mechanism for the inferior performance of the reported OSCs is discussed.
机译:虽然使用具有长寿命三重态激发态的分子材料来收集太阳能可能是提高有机太阳能电池(OSC)的功率转换效率(PCE)的有效方法,但这种OSC的性能如文献报道的那样低(真空沉积OSC的PCE <2.9%)。本文中,通过使用金(Ⅲ)5,10,15-三苯基甲氧基(Au-Cl),金(Ⅲ)10-(对三氟甲基苯基)-5,15-二苯甲酰基(Au-C2)实现高性能的OSC,描述了作为电子给体的金(Ⅲ)10-(五氟苯基)-5,15-二苯基-甲氧基(Au-C3)。这些金(Ⅲ)分子的激发态寿命≥25μs,低发射量子产率<0.15%。使用配合物Au-C1,Au-C2和Au-C3,可以制备真空沉积的OSC,它们的PCE分别为2.7%,3.0%和1.8%。经过OSC器件热处理后,PCE可以进一步提高到4.0%。同时,制造了基于Au-C2的固溶OSC,其PCE为6.0%。这些PCE值是使用具有长寿命激发态的金属有机配合物作为电子供体材料制造的真空沉积和固溶处理的OSC的最佳报告值之一。讨论了所报告的OSC的性能较差的潜在机制。

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  • 来源
    《Advanced Functional Materials 》 |2014年第29期| 4655-4665| 共11页
  • 作者单位

    State Key Laboratory of Synthetic Chemistry HKU-CAS Joint Laboratory on New Materials and Department of Chemistry The University of Hong Kong Pokfulam Road, Hong Kong;

    State Key Laboratory of Synthetic Chemistry HKU-CAS Joint Laboratory on New Materials and Department of Chemistry The University of Hong Kong Pokfulam Road, Hong Kong;

    State Key Laboratory of Synthetic Chemistry HKU-CAS Joint Laboratory on New Materials and Department of Chemistry The University of Hong Kong Pokfulam Road, Hong Kong;

    State Key Laboratory of Synthetic Chemistry HKU-CAS Joint Laboratory on New Materials and Department of Chemistry The University of Hong Kong Pokfulam Road, Hong Kong;

    State Key Laboratory of Synthetic Chemistry HKU-CAS Joint Laboratory on New Materials and Department of Chemistry The University of Hong Kong Pokfulam Road, Hong Kong;

    State Key Laboratory of Synthetic Chemistry HKU-CAS Joint Laboratory on New Materials and Department of Chemistry The University of Hong Kong Pokfulam Road, Hong Kong;

    State Key Laboratory of Synthetic Chemistry HKU-CAS Joint Laboratory on New Materials and Department of Chemistry The University of Hong Kong Pokfulam Road, Hong Kong;

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