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Effect of Molecular Orientation of Donor Polymers on Charge Generation and Photovoltaic Properties in Bulk Heterojunction All-Polymer Solar Cells

机译:施主聚合物的分子取向对本体异质结全聚合物太阳能电池中电荷产生和光伏性能的影响

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摘要

All-polymer solar cells (all-PSCs) utilizing p-type polymers as electron-donors and n -typepolymers as electron-acceptors have attracted a great deal of attention, and their efficiencies have been improved considerably. Here, five polymer donors with different molecular orientations are synthesized by random copolymerization of 5-fluoro-2,1,3-benzothiadiazole with different relative amounts of 2,2'-bithiophene (2T) and dithieno[3,2-b;2',3'-d]thiophene (DTT). Solar cells are prepared by blending the polymer donors with a naphthalene diimide-based polymer acceptor (PNDI) or a [6,6]-phenyl C-71-butyric acid methyl ester (PC71BM) acceptor and their morphologies and crystallinity as well as optoelectronic, charge-transport and photovoltaic properties are studied. Interestingly, charge generation in the solar cells is found to show higher dependence on the crystal orientation of the donor polymer for the PNDI-based all-PSCs than for the conventional PC71BM-based PSCs. As the population of face-on-oriented crystallites of the donor increased in PNDI-based PSC, the short-circuit current density (J(SC)) and external quantum efficiency of the devices are found to significantly improve. Consequently, device efficiency was enhanced of all-PSC from 3.11% to 6.01%. The study reveals that producing the same crystal orientation between the polymer donor and acceptor (face-on/face-on) is important in all-PSCs because they provide efficient charge transfer at the donor/acceptor interface.
机译:利用p型聚合物作为电子给体和n型聚合物作为电子受体的全聚合物太阳能电池(all-PSC)已经引起了广泛的关注,并且其效率已经大大提高。在这里,通过5-氟-2,1,3-苯并噻二唑与相对量不同的2,2'-联噻吩(2T)和二噻吩并[3,2-b; 2]的无规共聚反应合成了五个分子取向不同的聚合物供体。 ',3'-d]噻吩(DTT)。通过将聚合物供体与基于萘二酰亚胺的聚合物受体(PNDI)或[6,6]-苯基C-71-丁酸甲酯(PC71BM)受体共混,并制备其太阳能电池,以制备太阳能电池, ,研究了电荷传输和光伏特性。有趣的是,与基于PC71BM的传统PSC相比,发现基于PNDI的全PSC太阳能电池中的电荷生成对供体聚合物晶体取向的依赖性更高。在基于PNDI的PSC中,随着施主面对面微晶的数量增加,器件的短路电流密度(J(SC))和外部量子效率得到了显着提高。因此,全PSC的设备效率从3.11%提高到6.01%。研究表明,在所有PSC中,在聚合物供体和受体之间(面对面/面对面)产生相同的晶体取向非常重要,因为它们在供体/受体界面处提供了有效的电荷转移。

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  • 来源
    《Advanced energy materials》 |2017年第1期|1601365.1-1601365.9|共9页
  • 作者单位

    Korea Inst Sci & Technol, Photoelect Hybrid Res Ctr, Seoul 02792, South Korea;

    Korea Inst Sci & Technol, Photoelect Hybrid Res Ctr, Seoul 02792, South Korea|Univ Washington, Dept Mat Sci & Engn, Seattle, WA 98195 USA|Kyung Hee Univ, Dept Adv Mat Engn Informat & Elect, Yongin 26035, Gyeonggi Do, South Korea;

    Pohang Accelerator Lab, Pohang 37673, South Korea;

    Korea Inst Sci & Technol, Photoelect Hybrid Res Ctr, Seoul 02792, South Korea|Korea Univ, KU KIST Grad Sch Converging Sci & Technol, Seoul 02841, South Korea;

    Univ Washington, Dept Mat Sci & Engn, Seattle, WA 98195 USA|Univ Washington, Dept Chem, Seattle, WA 98195 USA;

    Korea Inst Sci & Technol, Photoelect Hybrid Res Ctr, Seoul 02792, South Korea;

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