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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >An unusual charge transfer accelerator of monomolecular Cb-OMe (4,4 '-(ortho-carborane)bis(N,N-bis(4-methoxyphenyl)aniline) in perovskite optoelectronic devices
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An unusual charge transfer accelerator of monomolecular Cb-OMe (4,4 '-(ortho-carborane)bis(N,N-bis(4-methoxyphenyl)aniline) in perovskite optoelectronic devices

机译:单体分子CB-OME(4,4' - (Ortho-Carborane)双(N,N-双(4-甲氧基苯基)苯胺中的异分CB-OME(4,4' - (Ortho-Carborane)苯胺)中的不寻常的电荷转移促进剂

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摘要

Hole transporting layer (HTL) is crucial in the development of high-performance perovskite solar cell (PSC). Here, Cb-OMe (4,4'-(ortho-carborane)bis(N,N-bis(4-methoxyphenyl)aniline) was prepared as a new hole transport material and stacked on poly(3,4-ethylenedioxythiophene)-poly(styrenesulfonate) (PEDOT:PSS) layer to adjust the energy level and improve the anode interface in inverted PSCs. Cb-OMe had a relatively deep highest occupied molecular orbital (HOMO) energy (-5.18 eV) and high lowest unoccupied molecular orbital (LUMO) energy (-3.12 eV). Its deposition on PEDOT:PSS as bi-HTL (hole transport layer) afforded efficient carrier transport from the perovskite absorber layer to the HTL because of the favorable energy level alignment and enhanced electrical conductivity. Furthermore, since Cb-OMe has a large energy band gap (2.06 eV), high optical transparency was obtained when it is stacked on PEDOT:PSS. Also, the obtained HTL is more hydrophilic, which improved the wettability of the perovskite films. Finally, the devices based on PEDOT:PSS/Cb-OMe showed the enhanced efficiencies compared to the other conditions which were PEDOT:PSS or PEDOT:PSS/4,4'-(Cyclo-hexane-1,1-diyObis(N,N-bis(4-tolyl)aniline) (TAPC)-based devices. As a result, the introduction of Cb-OMe into the cascade structure is an important help in accelerating hole carrier transport.
机译:空穴传输层(HTL)在高性能Perovskite太阳能电池(PSC)的开发中至关重要。这里,制备CB-OME(4,4' - (Ortho-Carborane)双(N,N-双(4-甲氧基苯基)苯胺作为新的空穴传输材料并堆叠在聚(3,4-亚乙二醇烯)上 - 聚(苯乙烯酸酯)(PEDOT:PSS)层来调节能量水平并改善倒置PSC中的阳极界面。CB-OME具有相对深的最高占用分子轨道(HOMO)能量(-5.18eV)和最低的未占用分子轨道(Lumo)能量(-3.12eV)。它在PEDOT上的沉积:PSS作为Bi-HTL(空穴传输层),由于能量水平对准和增强的导电性,从PEROVSKITE吸收层到HTL提供了高效的载体传输。此外,由于CB-OM具有大的能带隙(2.06eV),因此当它堆叠在PEDOT:PSS上时获得的高光学透明度。此外,所获得的HTL是更亲水的,这改善了钙钛矿薄膜的润湿性。最后,基于PEDOT的器件:PSS / CB-OME显示了增强的效率对于PEDOT的其他条件:PSS或PETOT:PSS / 4,4' - (环己烷-1,1-己二氰(N,N-双(4-甲苯基)苯胺)(TAPC)的装置。结果,将CB-OME引入级联结构是加速孔载体运输的重要帮助。

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